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Yuri Rostovtsev

Title: Professor

Department: Physics

College: College of Science

Curriculum Vitae

Curriculum Vitae Link

Education

  • PhD, Academy of Sciences USSR, 1991
    Major: Physical and Mathematical Science
  • MS, Moscow Institute of Physics and Technology, Moscow, Russia, 1983
    Major: Department of General and Applied Physics

Current Scheduled Teaching

PHYS 4310.001Quantum MechanicsSpring 2025
PHYS 4310.201Quantum MechanicsSpring 2025
PHYS 4950.750Senior ThesisSpring 2025
PHYS 4955.752Senior Thesis CapstoneSpring 2025
PHYS 6950.774Doctoral DissertationFall 2024
PHYS 6940.774Individual ResearchFall 2024

Previous Scheduled Teaching

PHYS 6950.753Doctoral DissertationSummer 10W 2024
PHYS 6950.757Doctoral DissertationSpring 2024
PHYS 6940.751Individual ResearchSpring 2024
PHYS 6000.001Mathematical Methods of Physics ISpring 2024 SPOT
PHYS 4310.001Quantum MechanicsSpring 2024 Syllabus SPOT
PHYS 4310.201Quantum MechanicsSpring 2024 Syllabus SPOT
PHYS 4955.752Senior Thesis CapstoneSpring 2024
PHYS 5900.751Special ProblemsSpring 2024
PHYS 5910.754Special ProblemsSpring 2024
PHYS 5710.001Advanced Classical Mechanics IFall 2023 SPOT
PHYS 6950.774Doctoral DissertationFall 2023
PHYS 6940.774Individual ResearchFall 2023
PHYS 4950.760Senior ThesisFall 2023
PHYS 5910.774Special ProblemsFall 2023
PHYS 6950.757Doctoral DissertationSpring 2023
PHYS 6940.751Individual ResearchSpring 2023
PHYS 4310.001Quantum MechanicsSpring 2023 Syllabus SPOT
PHYS 4310.201Quantum MechanicsSpring 2023 Syllabus SPOT
PHYS 4955.751Senior Thesis CapstoneSpring 2023
PHYS 5910.754Special ProblemsSpring 2023
PHYS 6950.774Doctoral DissertationFall 2022
PHYS 6940.774Individual ResearchFall 2022
PHYS 5500.001Quantum Mechanics IFall 2022 SPOT
PHYS 5920.005Research Problems in Lieu of ThesisFall 2022
PHYS 5930.700Research Problems in Lieu of ThesisFall 2022
PHYS 4950.760Senior ThesisFall 2022
PHYS 5910.774Special ProblemsFall 2022
PHYS 6950.753Doctoral DissertationSummer 10W 2022
PHYS 6950.760Doctoral DissertationSummer 5W2 2022
PHYS 6510.001Advanced Quantum TheorySpring 2022 SPOT
PHYS 5941.001ColloquiumSpring 2022 SPOT
PHYS 6950.774Doctoral DissertationSpring 2022
PHYS 6940.774Individual ResearchSpring 2022
PHYS 5910.753Special ProblemsSpring 2022
PHYS 5941.001ColloquiumFall 2021 SPOT
PHYS 6950.774Doctoral DissertationFall 2021
PHYS 6940.774Individual ResearchFall 2021
PHYS 1710.003MechanicsFall 2021 Syllabus SPOT
PHYS 1710.211MechanicsFall 2021
PHYS 1710.213MechanicsFall 2021
PHYS 1710.216MechanicsFall 2021
PHYS 5910.774Special ProblemsFall 2021
PHYS 5941.001ColloquiumSpring 2021 SPOT
PHYS 6950.774Doctoral DissertationSpring 2021
PHYS 6940.774Individual ResearchSpring 2021
PHYS 5510.001Quantum Mechanics IISpring 2021 SPOT
PHYS 5910.774Special ProblemsSpring 2021
PHYS 6500.001Advanced Quantum TheoryFall 2020 SPOT
PHYS 5941.001ColloquiumFall 2020 SPOT
PHYS 6950.774Doctoral DissertationFall 2020
PHYS 6940.774Individual ResearchFall 2020
PHYS 5941.001ColloquiumSpring 2020
PHYS 6950.774Doctoral DissertationSpring 2020
PHYS 6940.774Individual ResearchSpring 2020
PHYS 5510.001Quantum Mechanics IISpring 2020
PHYS 5941.001ColloquiumFall 2019 SPOT
PHYS 6950.774Doctoral DissertationFall 2019
PHYS 6940.774Individual ResearchFall 2019
PHYS 5500.001Quantum Mechanics IFall 2019 SPOT
PHYS 4950.760Senior ThesisFall 2019
PHYS 4900.774Special ProblemsFall 2019
PHYS 5941.001ColloquiumSpring 2019 SPOT
PHYS 6950.774Doctoral DissertationSpring 2019
PHYS 5510.001Quantum Mechanics IISpring 2019 SPOT
PHYS 4955.009Senior Thesis CapstoneSpring 2019
PHYS 5910.774Special ProblemsSpring 2019
PHYS 5941.001ColloquiumFall 2018 SPOT
PHYS 6950.774Doctoral DissertationFall 2018
PHYS 5500.001Quantum Mechanics IFall 2018 SPOT
PHYS 4950.760Senior ThesisFall 2018
PHYS 4900.774Special ProblemsFall 2018
PHYS 5910.774Special ProblemsFall 2018
PHYS 1710.001MechanicsSummer 5W1 2018 Syllabus SPOT
PHYS 1710.201MechanicsSummer 5W1 2018 Syllabus SPOT
PHYS 6950.774Doctoral DissertationSpring 2018
PHYS 6940.774Individual ResearchSpring 2018
PHYS 3030.501Laboratory in Modern PhysicsSpring 2018 SPOT
PHYS 3010.001Modern PhysicsSpring 2018 Syllabus SPOT
PHYS 3010.201Modern PhysicsSpring 2018 SPOT
PHYS 5510.001Quantum Mechanics IISpring 2018 SPOT
PHYS 4955.009Senior Thesis CapstoneSpring 2018
PHYS 4900.774Special ProblemsSpring 2018
PHYS 4910.700Special ProblemsSpring 2018
PHYS 5910.774Special ProblemsSpring 2018
PHYS 6950.774Doctoral DissertationFall 2017
PHYS 4950.760Senior ThesisFall 2017
PHYS 5910.774Special ProblemsFall 2017
PHYS 6910.774Special ProblemsFall 2017
PHYS 2220.001Electricity and MagnetismSummer 5W2 2017 Syllabus
PHYS 2220.201Electricity and MagnetismSummer 5W2 2017 Syllabus
PHYS 5950.770Master's ThesisSummer 5W1 2017
PHYS 1710.001MechanicsSummer 5W1 2017 Syllabus
PHYS 1710.201MechanicsSummer 5W1 2017 Syllabus
PHYS 6950.774Doctoral DissertationSpring 2017
PHYS 3030.501Laboratory in Modern PhysicsSpring 2017
PHYS 5950.002Master's ThesisSpring 2017
PHYS 1710.001MechanicsSpring 2017 Syllabus SPOT
PHYS 1710.201MechanicsSpring 2017
PHYS 1710.202MechanicsSpring 2017
PHYS 1710.206MechanicsSpring 2017
PHYS 3010.001Modern PhysicsSpring 2017 Syllabus SPOT
PHYS 3010.201Modern PhysicsSpring 2017
PHYS 4955.001Senior Thesis CapstoneSpring 2017
PHYS 2900.774Special ProblemsSpring 2017
PHYS 4900.774Special ProblemsSpring 2017
PHYS 5900.774Special ProblemsSpring 2017
PHYS 6950.774Doctoral DissertationFall 2016
PHYS 3030.501Laboratory in Modern PhysicsFall 2016 SPOT
PHYS 3030.502Laboratory in Modern PhysicsFall 2016 SPOT
PHYS 5950.750Master's ThesisFall 2016
PHYS 3010.001Modern PhysicsFall 2016 Syllabus SPOT
PHYS 3010.201Modern PhysicsFall 2016
PHYS 4950.760Senior ThesisFall 2016
PHYS 4955.005Senior Thesis CapstoneFall 2016
PHYS 2900.774Special ProblemsFall 2016
PHYS 6950.774Doctoral DissertationSpring 2016
PHYS 3030.501Laboratory in Modern PhysicsSpring 2016 SPOT
PHYS 3010.001Modern PhysicsSpring 2016 Syllabus SPOT
PHYS 3010.201Modern PhysicsSpring 2016
PHYS 4950.012Senior ThesisSpring 2016
PHYS 2910.422Special ProblemsSpring 2016
PHYS 4910.700Special ProblemsSpring 2016
PHYS 5910.774Special ProblemsSpring 2016
PHYS 5710.001Advanced Classical Mechanics IFall 2015 SPOT
PHYS 6950.774Doctoral DissertationFall 2015
PHYS 3030.501Laboratory in Modern PhysicsFall 2015
PHYS 3030.502Laboratory in Modern PhysicsFall 2015
PHYS 3010.001Modern PhysicsFall 2015 Syllabus SPOT
PHYS 3010.201Modern PhysicsFall 2015
PHYS 4910.774Special ProblemsFall 2015
PHYS 6950.774Doctoral DissertationSpring 2015
PHYS 6940.774Individual ResearchSpring 2015
PHYS 4955.007Senior Thesis CapstoneSpring 2015
PHYS 4955.009Senior Thesis CapstoneSpring 2015
PHYS 5910.774Special ProblemsSpring 2015
PHYS 4110.001Statistical and Thermal PhysicsSpring 2015 Syllabus
PHYS 4110.201Statistical and Thermal PhysicsSpring 2015
PHYS 6950.774Doctoral DissertationFall 2014
PHYS 6940.774Individual ResearchFall 2014
PHYS 4420.001Physical OpticsFall 2014 Syllabus
PHYS 4950.760Senior ThesisFall 2014
PHYS 5910.774Special ProblemsFall 2014
PHYS 5910.774Special ProblemsSummer 5W2 2014
PHYS 6950.774Doctoral DissertationSpring 2014
PHYS 4220.001Electromagnetic WavesSpring 2014 Syllabus
PHYS 5910.774Special ProblemsSpring 2014
PHYS 6910.774Special ProblemsSpring 2014
PHYS 6950.774Doctoral DissertationFall 2013
PHYS 5500.001Quantum Mechanics IFall 2013
PHYS 6950.774Doctoral DissertationSummer 5W1 2013
PHYS 5910.774Special ProblemsSummer 5W1 2013
PHYS 6950.774Doctoral DissertationSpring 2013
PHYS 1730.506Laboratory in MechanicsSpring 2013
PHYS 1730.507Laboratory in MechanicsSpring 2013
PHYS 1730.509Laboratory in MechanicsSpring 2013
PHYS 1730.510Laboratory in MechanicsSpring 2013
PHYS 1730.512Laboratory in MechanicsSpring 2013
PHYS 1710.002MechanicsSpring 2013 Syllabus
PHYS 1710.202MechanicsSpring 2013 Syllabus
PHYS 1710.205MechanicsSpring 2013 Syllabus
PHYS 6950.774Doctoral DissertationFall 2012
PHYS 2220.001Electricity and MagnetismFall 2012 Syllabus
PHYS 2220.204Electricity and MagnetismFall 2012 Syllabus
PHYS 2220.205Electricity and MagnetismFall 2012 Syllabus
PHYS 2220.206Electricity and MagnetismFall 2012 Syllabus
PHYS 6940.774Individual ResearchFall 2012
PHYS 2240.501Laboratory in Wave Motion, Electricity, Magnetism and OpticsFall 2012
PHYS 6950.774Doctoral DissertationSummer 10W 2012
PHYS 5510.002Quantum Mechanics IISpring 2012
PHYS 5900.774Special ProblemsSpring 2012
PHYS 5910.774Special ProblemsSpring 2012
PHYS 5500.001Quantum Mechanics IFall 2011
PHYS 4900.774Special ProblemsFall 2011
PHYS 5900.774Special ProblemsFall 2011
PHYS 5910.774Special ProblemsFall 2011
PHYS 4900.774Special ProblemsSummer 10W 2011
PHYS 5910.774Special ProblemsSummer 5W1 2011
PHYS 5510.002Quantum Mechanics IISpring 2011
PHYS 5900.774Special ProblemsSpring 2011
PHYS 5910.774Special ProblemsSpring 2011
PHYS 1710.002MechanicsFall 2010 Syllabus
PHYS 1710.211MechanicsFall 2010 Syllabus
PHYS 1710.212MechanicsFall 2010 Syllabus
PHYS 1710.213MechanicsFall 2010 Syllabus
PHYS 2220.001Electricity and MagnetismSpring 2010 Syllabus
PHYS 2220.201Electricity and MagnetismSpring 2010 Syllabus
PHYS 2220.204Electricity and MagnetismSpring 2010 Syllabus
PHYS 1710.002MechanicsFall 2009 Syllabus
PHYS 1710.211MechanicsFall 2009 Syllabus
PHYS 1710.212MechanicsFall 2009 Syllabus
PHYS 1710.213MechanicsFall 2009 Syllabus

Published Intellectual Contributions

    Abstracts and Proceedings

  • R.L. Kolesov, Yu.V. Rostovtsev, O.A. Kocharovskaya. (1997). Nuclear coherence and inversionless gain at gamma-ray transition.
  • R.A. Ahmedzhanov, I.N. Polushkin, Yu.V. Rostovtsev. (1994). Intracavity laser diagnostics of nanosecond HF fields: Proceedings of II Internatianal workshop ``Strong Microwaves in plasmas,''.
  • Conference Proceeding

  • Rostovtsev, Y., Roy, C.D., Singh, P., Patnaik, A.K. (2022). Chirped pulse propagation influenced by coherent population trapping in molecular media. Optical and Quantum Sensing and Precision Metrology II. PC120162L.
  • Mahat, M., Rostovtsev, Y., Karna, S., D'Souza, F., Neogi, A. (2018). Plasmonic induced transparency in graphene oxide quantum dots. Quantum Dots and Nanostructures: Growth, Characterization, and Modeling XV. 10543 69--76.
  • Mahat, M., Rostovtsev, Y., Karna, S., Neogi, A. (2017). Phonon-assisted plasmon induced transparency in graphene nanostructures. Optics InfoBase Conference Papers. Part F54-NLO 2017 https://api.elsevier.com/content/abstract/scopus_id/85027988221
  • Yuri V. Rostovtsev. (1996). Analysis of amplification without inversion by Monte-Carlo simulations.
  • O. Kocharovskaya and Yu. Rostovtsev. (1995). Thermodynamics` restrictions on Amplification without Inversion.
  • Yu. Rostovtsev. (1994). Line shape of probe-field in laser produced plasmas.
  • I.N. Polushkin, Yu.V. Rostovtsev. (1993). Isotope control by means of intracavity phase polarization spectroscopy.
  • R.A. Ahmedzhanov, I.N. Polushkin, Yu.V. Rostovtsev, A.I. Schsherbacov, V.V. Yazenkov. (1993). Optical Analyzer of NO_2 and SO_2 contempt.
  • I.N. Polushkin, and Yu.V. Rostovtsev. (1991). Intracavity Phase-polarisation Spectroscopy.
  • R.A. Ahmedzhonov, I.N. Polushkin, Yu.V. Rostovtsev, and V.V. Yazenkov. (1991). The cesium line broadening measurment in microwave discharge.
  • K. Kolszek, M. Rhpa, I. Ullschmied, M. Clupek, R.A. Ahmedzhanov, I.N. Polushkin, Yu.V. Rostovtsev, A.I. Scherbakov, and V.V. Yazenkov. (1990). Measurement of hydrogen line profiles in the REBEX  experiment:  Cont. Pap. of 8th Inter.  conf. on High-Power Partticle Beams.
  • I.N. Polushkin, Yu.V. Rostovtsev. (1989).  The method for measurment of the Voigt parameter in plasma.
  • G.L. Klimchitskaya, I.N. Polushkin, Yu.V. Rostovtsev, V.V. Yazenkov. (1987). Laser diagnostics of microwave fields in hydrogen plasma.
  • Encyclopedia Article

  • Drachev, V.P., Rostovtsev, Y. (2019). Superradient and subradient emission of molecules coupled via plasmons. https://atlasofscience.org/superradient-and-subradient-emission-of-molecules-coupled-via-plasmons/
  • R. Akhmedzhanov, Yu. V. Rostovtsev. (1998). Intracavity laser spectroscopy for plasmas.
  • Journal Article

  • Emerick, J., Roy, C., Brankovic, Z., Rostovtsev, Y. (2023). Quantum control of quantum systems: from room-temperature masers to generation of entanglement photons. The European Physical Journal Special Topics. Denton TX,
  • Rostovtsev, Y., Emerick, J., Patnaik, A. (2023). Refractive Index of a Single Atom Experienced by a Single Photon. Results in Optics. 13 100568. Denton TX,
  • Ariunbold, G.O., Sautenkov, V.A., Li, H., Murawski, R.K., Wang, X., Zhi, M., Begzjav, T., Sokolov, A.V., Scully, M.O., Rostovtsev, Y. (2022). Observations of ultrafast superfluorescent beatings in a cesium atomic vapor excited by femtosecond laser pulses. Physics Letters A. 127945. North-Holland.
  • Goudarzi, A., Behpour, S., Sundararaman, R., Garcia, O.N., Rostovtsev, Y. (2022). Trap dynamics of hot electrons in metal--insulator--metal plasmonic structures for ultra-fast optoelectronics. Journal of Applied Physics. 131 (19) 194501. AIP Publishing LLC.
  • Roy, C.D., Brankovi\'c, Zorica, Rostovtsev, Y. (2022). Weakly Aligned Molecules: From Molecular Detectors to Room-Temperature Tunable Masers. Journal of Physics: Conference Series - IOPscience. Journal of Physics: Conference Series. 2249 (1) 012001.
  • Rostovtsev, Y., Moazzezi, M., Drachev, V.P., Urbas, A.M. (2021). Observation of plasmonically induced transparency by the pump-probe technique. The European Physical Journal. 230 951-962.
  • Rostovtsev, Y., Arinbold, G.O., Semonn, B., Nagpal, S. (2021). Ultrafast dephasing in hydrogen bonded pyridin mixtures. Annals of Physics. 19 234-240.
  • Safonov, V.L., Bas, D.A., Berman, D., Rostovtsev, Y., Roberts, J.A., McConney, M.E., Page, M.R. (2021). Adaptation of Fluctuating Magnetoacoustic System to External Signals. IEEE Access. 9 80847-80853. https://api.elsevier.com/content/abstract/scopus_id/85107350662
  • Brankovic, Z., Rostovtsev, Y. (2020). A resonant single frequency molecular detector with high sensitivity and selectivity for gas mixtures. Scientific Reports. 10 (1) 1-10.
  • Rostovtsev, Y., Moazzezi, M., Drachev, V.P., Urbas, A.M. (2020). Second-order correlation function of fluorescence from a few atoms near plasmonic surface. Physica Scripta. 95 (3) 034011.
  • Moazzezi, Drachev, V.P., Rostovtsev, Y. (2020). Second-order correlation function of fluorescence from a few atoms near plasmonic surface.. Physica Scripta. 95 034011.
  • Poudel, Y., Lim, G.N., Moazzezi, M., Hennighausen, Z., Rostovtsev, Y., D’Souza, F., Kar, S., Neogi, A. (2019). Active control of coherent dynamics in hybrid plasmonic MoS2 monolayers with dressed phonons. Other. American Chemical Society.
  • Poudel, Y., Lim, G.N., Moazzezi, M., Hennighausen, Z., Rostovtsev, Y., D’Souza, F., Kar, S., Neogi, A. (2019). Active control of coherent dynamics in hybrid plasmonic MoS2 monolayers with dressed phonons. Other. 6 (7) 1645--1655. American Chemical Society.
  • Sun, D., Kozlov, V., Yuan, L., Rostovtsev, Y. (2019). Collision induced coherence in plasma and Branching Ratio in multilevel system. Laser Physics. 22 025204.
  • Rostovtsev, Y. (2019). Frequency shift of an optical cavity mode due to a single-atom motion. Journal of Modern Optics. 66 674-678.
  • Patnaik, A.K., Singh, P., Roy, S., Gord, J.R., Rostovtsev, Y. (2019). Influence of coherent population trapping on Raman scattering. Physical Review A. 100 023808.
  • Poudel, Y., Lim, G.N., Moazzezi, M., Hennighausen, Z., Rostovtsev, Y., DSouza, F., Kar, S., Neogi, A. (2018). Active control of coherent dynamics in hybrid plasmonic MoS2 monolayers with dressed phonons. Other.
  • Rostovtsev, Y. (2018). Magnus expansion method for two-level atom interacting with few-cycle pulse. Journal of Physics B: Atomic, Molecular and Optical Physics. 65 1378-1384.
  • Drachev, V.P., De Silva, V.C., Moazzezi, M., Rostovtsev, Y. (2018). Plasmon coupled super- and sub- radiance from dye shells. Journal of Physics: Condensed Matter. 1092 012026. IOP Publishing.
  • Drachev, V.P., Lyvers, D.P., Moazzezi, M., De Silva, V.C., Brown, D.P., Urbas, A.M., Rostovtsev, Y. (2018). Cooperative bi-exponential decay of dye emission coupled via plasmons.. Scientific Reports. 8 9508. London, Nature Publishing Group.
  • Neogi, A., Neogi, Y. (2018). Plasmonic induced transparency in graphene oxide quantum dots. XV 105430N. Proc. SPIE 10543.
  • Rostovtsev, Y. (2017). Observation of coherent effects using mode-locked Rubidium Laser. Journal of Physics B: Atomic, Molecular and Optical Physics. 50 035503.
  • Rostovtsev, Y. Plasmonically induced transparency in graphene oxide quantum dots with dressed phonon states. ACS Nano.
  • Mahat, M., Rostovtsev, Y., Karna, S., Lim, G.N., D’Souza, F., Neogi, A. (2017). Plasmonically induced transparency in graphene oxide quantum dots with dressed phonon states. Other. 5 (2) 614--620. American Chemical Society.
  • Rostovtsev, Y. (2016). Absorption and emission in defective cholesteric liquid crystal cells,. Laser Physics. 13 046002.
  • Rostovtsev, Y. (2016). Coherence-Driven Topological Transition in Quantum Metamaterials. Physical Review Letters. 116 165502.
  • Rostovtsev, Y. (2016). Effects of quantum coherence and interference in atoms near nanoparticles. Physical Review A. 93 043405.
  • Rostovtsev, Y. (2016). QASER: How a Low Frequency Drive can Pump Energy into Atomic and Photon Oscillators Simultaneously. Journal of Physics B: Atomic, Molecular and Optical Physics. 63 33-40.
  • Rostovtsev, Y. (2015). Gamma radiation production using channeled positron annihilation in crystals,. Laser Physics. 12 076002.
  • Rostovtsev, Y. (2015). Manipulation of Light Propagation in Photonic Crystal. Laser Physics. 32 2122-2128.
  • Rostovtsev, Y. (2015). Observving the transition from yoked superflourescence to superradiance. Optics Communications. 351 45-49.
  • Rostovtsev, Y. (2015). Time evolution operator of a driven three-level system. Physical Review A. 12 076002.
  • Pooja Singh, Sankar Davuluri, and Yuri Rostovtsev. (2014). Detection of Coriolis force and rotational Doppler effect by using slow light. Optical Engineering. 53 (102708)
  • Jonathan Thompson, Charles Ballmann, Han Cai,, Zhenhuan Yi, Yuri Rostovtsev, Alexei Sokolov, Phil Hemmer, Phil; A. Zheltikov, Gombojav Ariunbold, Marlan O. Scully. (2014). Pulsed cooperative backward emissions from non-degenerate atomic transitions in sodium. New Journal of Physics. 16 103017.
  • Sankar Davuluri, and Yuri Rostovtsev. (2014). Quantum Opto-Mechanics: from rotation to Coriolis force detection. Journal of Modern Optics. 61 13.
  • Zoe E. Sariyanni, Dong Sun, and Yuri Rostovtsev. (2014). Stimulated Raman spectroscopy with 0pi pulses. Optics Letters. 39 766.
  • Gombojav O. Ariunbold, Vladimir A. Sautenkov, Yuri V. Rostovtsev, and Marlan O. Scully. (2014). Ultrafast laser control of backward superfluorescence towards standoff sensing. Applied Physics Letters. 104 021114.
  • Dongxia Ma and Yuri Rostovtsev,. (2013). MicrosoftInternetExplorer4 Efficient excitation of Raman coherence by a gradient force,.
  • Suman Dhayal, Gopal Sapkota, Usha Philipose, Yuri Rostovtsev,. (2013). Photovoltaics based on nanotubes filled with nano-particles: Generalized Mie theory approach,.
  • Sankar Davuluri, and Yuri Rostovtsev,. (2013). Quantum Optical Mouse to detect Carioles force,.
  • Sankar Davuluri and Yuri V. Rostovtsev,. (2013). Switching between superluminal to subluminal velocities and tunable slow light in a four-level atomic system,.
  • Luqi Yuan, Brett H. Hokr, Andrew J. Traverso, Dmitri V. Voronine, Yuri Rostovtsev, Alexei V. Sokolov, Marlan O. Scully,. (2013). Theoretical analysis of the coherence brightened laser in air,.
  • Bernhard W. Adams, Christian Buth,Stefano M. Cavaletto,J¨org Evers,Zolt´an Harman,Christoph H. Keitel, Adriana P´alffy, Antonio Pic´on, Ralf R¨ohlsbergerd,Yuri Rostovtsev,Kenji Tamasaku,. (2013). X-Ray Quantum Optics,.
  • H. Eleuch, Pankaj K. Jha, and Yuri V. Rostovtsev,. (2012). Analytical solution to position dependent mass for 3D-Schrodinger equation,.
  • Andrew J. Traverso, Rodrigo Sanchez-Gonzalez, Luqi Yuan, Kai Wang, Dmitri B. Voronin, Aleksei M. Zheltikov, Yuri Rostovtsev, Vladimir Sautenkov, Alexei V. Sokolov, Simon W. North, Marlan O Scully. (2012). Coherence brightened laser source for atmospheric remote sensing ,.
  • Sankar Davuluri and Yuri V. Rostovtsev,. (2012). Controllable enhanced dragging of light in ultradispersive media , Related Links: http://link.aps.org/doi/10.1103/PhysRevA.86.013806.
  • Milan Sindelka, H. Eleuch and Y. V. Rostovtsev,. (2012). MicrosoftInternetExplorer4 Analytic approach to 1D bound state problems.
  • Luqi Yuan, Dmitry Pestov, Robert K. Murawski, Gombojav O. Ariunbold, Miaochan Zhi, Xi Wang, Vladimir A. Sautenkov, Yuri V. Rostovtsev, Torsten Siebert, and Alexei V. Sokolov,. (2012). Tracking molecular wave packets in cesium dimers by coherent Raman scattering , Related Links: http://link.aps.org/doi/10.1103/PhysRevA.86.023421.
  • Pankaj K. Jha, Konstantin E. Dorfman, Zhenhuan Yi, Luqi Yuan, Vladimir A. Sautenkov, Yuri V. Rostovtsev, George R. Welch, Aleksei M. Zheltikov, and Marlan O. Scully,. (2012). Ultralow-power local laser control of the dimer density in alkali-metal vapors through photodesorption,.
  • Eyob A. Sete, A. A. Svidzinsky, Y. V. Rostovtsev, H. Eleuch, P.K. Jha, S. Suckewer, M. O. Scully,. (2012). Using quantum coherence to generate gain in the XUV and X-Ray: Gain swept superradiance and lasing without inversion ,.
  • Hichem Eleuch, M. Sebawe, Yuri V. Rostovtsev,. (2011). " Analytical solution for the one-dimensional scattering problem ,".
  • Gombojav O. Ariunbold, Michael M. Kash, Vladimir A. Sautenkov, Hebin Li, Yuri V. Rostovtsev, George R. Welch, and Marlan O. Scully,. (2011). An Observation of Picosecond UV Pulses Produced by Coherent Scattering of IR Femtosecond Pulses in Atomic Rubidium Vapor,.
  • Hichem Eleuch, Yuri V. Rostovtsev, M. Sebawe,. (2011). Autocorrelation function for a two-level atom "with counter-rotating terms,".
  • Pankaj K. Jha, Y. V. Rostovtsev, H. Li, V. A. Sautenkov, M. O. Scully,. (2011). Experimental observation of carrier-envelope-phase effects by multicycle pulses ,.
  • Pankaj K. Jha, Y. V. Rostovtsev, H. Li, V. A. Sautenkov, M. O. Scully. (2011). Experimental observation of carrier-envelope-phase effects by multicycle pulses,.
  • Pankaj K. Jha, Hichem Eleuch,Yuri V. Rostovtsev,. (2011). On exact and approximate solutions to position-dependent mass Schrodinger equation..
  • Dong Sun, Zoe-Elizabeth Sariyanni, Sumanta Das, and Yuri V. Rostovtsev,. (2011). Propagation of 0π pulses in a gas of three-level atoms , Related Links: http://pra.aps.org/abstract/PRA/v83/i6/e063815.
  • Dong Sun, Zoe-Elizabeth Sariyanni, Sumanta Das, and Yuri V. Rostovtsev. (2011). Propagation of 0π pulses in a gas of three-level atoms , Related Links: http://pra.aps.org/abstract/PRA/v83/i6/e063815.
  • V. A. Sautenkov, H. Li, M. A. Gubin, Yu. V. Rostovtsev, M. O. Scully. (2011). Variable Spectral Filter based on Optically Saturated Selective Reflection,.
  • P.K. Jha, Y.V. Rostovtsev,. (2010). Analytical solutions for a two-level system driven by a class of chirped pulses,.
  • H. Li, V. A. Sautenkov, Y. V. Rostovtsev, M.M. Kash, P. Anisimov, G. R. Welch, and M. O. Scully,. (2010). Carrier-Envelope Phase Effect on Atomic Excitation by Few-Cycle rf Pulses Related Links: http://prl.aps.org/abstract/PRL/v104/i10/e103001.
  • P.K. Jha, Y.V. Rostovtsev,. (2010). Coherent excitation of a two-level atom driven by a far-off-resonant classical field: Analytical solutions Related Links: http://pra.aps.org/abstract/PRA/v81/i3/e033827.
  • Luqi Yuan, Gombojav O. Ariunbold, Robert K. Murawski, Dmitry Pestov, Xi Wang, Vladimir A. Sautenkov, Alexei V. Sokolov, Yuri V.Rostovtsev, and Marlan O. Scully,. (2010). Femtosecond Wave-Packet Dynamics in Cesium Dimers Studied through Controlled Stimulated Emission,.
  • Gombojav O. Ariunbold, Yuri V. Rostovtsev, Vladimir A. Sautenkov, Marlan O. Scully,. (2010). Intensity correlation and anticorrelations in coherently driven atomic vapor,.
  • H. Eleuch, Y. Rostovtsev, M.O. Scully,. (2010). New analytic solution of Schr¨odinger's equation,.
  • H. Chen, H. Li, Y. V. Rostovtsev, M. A. Gubin, V. A. Sautenkov, and M. O. Scully,. (2010). Observation of Electromagnetically Induced Transparency in Cesium Molecules ,.
  • J. Odeurs, G.R. Hoy, Y. Rostovtsev, R.N. Shakhmuratov. (2010). Towards more relaxed conditions for a gamma-ray laser: Methods to realize induced transparency for nuclear resonant gamma radiation.
  • Vladimir A. Sautenkov, Hebin Li, Yuri V. Rostovtsev, Marlan O. Scully,. (2010). Ultra-dispersive adaptive prism..
  • N.G. Kalugin, Y.V. Rostovtsev. (2009). "Dark" and "Bright" Excitons in Carbon Nanotubes: New Media for Quantum Optics.
  • Hebin Li, Vladimir A. Sautenkov, Yuri V. Rostovtsev, George R. Welch, Philip R. Hemmer, Marlan O. Scully. (2009). Electromagnetically induced transparency controlled by a microwave field.
  • Hebin Li, Vladimir A. Sautenkov, Yuri V. Rostovtsev, Marlan O. Scully. (2009). Excitation dependence of resonance line self-broadening at different atomic densities.
  • Y. Rostovtsev. (2009). Excitation of atomic coherence at XUV transition enhanced by tunneling in an electric field,.
  • Y. Rostovtsev, H. Eleuch, A. Svidzinsky, H. Li, Vladimir A. Sautenkov, M.O. Scully. (2009). Excitation of atomic coherence using off-resonant strong laser pulses.
  • Tigran S. Varzhapetyan, Hebin Li, Gombojav O. Ariunbold, Vladimir A. Sautenkov, Yuri V. Rostovtsev, Marlan O. Scully. (2009). Intensity correlations in resonant nonlinear magneto-optical rotation.
  • A.I. Artemiev, M.V. Fedorov, A.S. Gevorkyan, N.Sh. Izmailyan, R.V. Karapetyan, K.B. Oganesyan, A.A. Akopyan, Yu. V. Rostovtsev, M.O. Scully, G. Kurizki. (2009). Radiation processes accompanying the axially channeled positrons. Problem of stimulation of resonant transitions between different quantum states Related Links: http://apps.isiknowledge.com.lib-ezproxy.tamu.edu:2048/full_record.do?product.
  • V. A. Sautenkov, H. Li, Y. V. Rostovtsev, G. R. Welch, J. P. Davis, F. A. Narducci and M. O. Scully. (2009). Using phase dynamics in EIT to probe ground state relaxation in rubidium vapor.
  • G.O. Ariunbold, M.M. Kash, Hebin Li, D. Pestov, V. Sautenkov, Y. Rostovtsev, G.R. Welch, M.O. Scully. (2008). A Model Experiment for Stand-off Sensing.
  • H. Li, V.A. Sautenkov, T.S. Varzhaperyan, Y.V. Rostovtsev, M.O. Scully. (2008). Atomic noise spectra in nonlinear magneto-optical rotation in a rubidium vapor.
  • V.A. Sautenkov, H. Li, Y.V. Rostovtsev, G.R. Welch, J.P. Davis, F.A. Narducci, M.O. Scully. (2008). Dynamic control of EIT by changing optical phase.
  • Y. Rostovtsev. (2008). Excitation of atomic coherence at XUV transition by using a far-off resonant two-frequency driving field.
  • H. Li, T.S. Varzhapetyan, V.A. Sautenkov, Y.V. Rostovtsev, M.O. Scully. (2008). Improvement of spectral resolution by using the excitation dependence of dipole-dipole interaction in a dense atomic gas.
  • V.A. Sautenkov, Y.V. Rostovtsev, E.R. Eliel. (2008). Observation of narrow Autler-Townes components in the resonant response of a dense atomic gas.
  • Hebin Li, Vladimir Sautenkov, Michael Kash, George R. Welch, Yuri V. Rostovtsev, Marlan O. Scully. (2008). Optical imaging beyond diffraction limit via dark states.
  • Robert K. Murawski, Yuri V. Rostovtsev, Zoe-Elizabeth Sariyanni, Vladimir A. Sautenkov, Sterling Backus, Daisy Raymondson, Henry C. Kapteyn, Margaret M. Murnane, and Marlan O. Scully. (2008). Resonant uv pump-probe spectroscopy of dipicolinic acid via impulsive excitation.
  • Marlan O. Scully, Yuri Rostovtsev, Anatoly Svidzinsky, Jun-Tao Chang. (2008). XUV Coherent Raman Superradiance.
  • M.Zhi, D.Pestov, Xi Wang, R.K.Murawski. Yu.V.Rostovtsev, Z.E.Sariyanni, V.A.Sautenkov, N.G.Kalugin, and A.V.Sokolov. (2007). "Concentration dependence of femtosecond CARS in the presence of strong absorption,".
  • D. Pestov, R. K. Murawski, G. O. Ariunbold, Xi Wang, M. Zhi, A. V. Sokolov, V. A. Sautenkov, Yu. V. Rostovtsev, A. Dogariu,Yu Huang, and M. O. Scully. (2007). "Optimizing the Laser Pulse Configuration for Coherent Raman Spectroscopy,".
  • P. Anisimov, Y. Rostovtsev, O. Kocharovskaya. (2007). "Suppression of inhomogeneous line broadening of Mössbauer resonance by a spinning magnetic field,".
  • Y. Golubev, T.Y. Golubeva, Y. Rostovtsev, M.O. Scully. (2007). Control of group velocity of light via magnetic field.
  • P. Sauer, Y. Rostovtsev, and R. E. Allen. (2007). Effect of nuclear motion on the absorption spectrum of dipicolinic acid.
  • N. G. Kalugin, Yu. Rostovtsev, E. Kuznetsova, and M. O. Scully. (2007). Generation of strong short coherent terahertz pulses in gases and solids using quantum coherence.
  • R. N. Shakhmuratov, J. Odeurs, S. Gheysen, Y. Rostovtsev, O. Kocharovskaya, and P. Mandel. (2007). Level Mixing Induced Transparency.
  • P. Anisimov, Y. Rostovtsev, O. Kocharovskaya. (2007). Magic-angle condition for line narrowing in Mossbauer spectroscopy.
  • V. Sautenkov, H. Li, Y. Rostovtsev, M.O. Scully. (2007). Power spectra and correlations of intensity fluctuations in electromagnetically induced transparency.
  • Y. Rostovtsev, M.O. Scully. (2007). Soft X-ray lasing without inversion by using Pauli principle.
  • A.I. Artemiev, D.N. Klochkov, K. Ogannesyan, Y.V. Rostovtsev, M. Federov. (2007). Spatial amplification of a laser wave and the transverse spread of electrons in an undulator with a noncollinear configuration.
  • P. Anisimov, F. Vagizov, Y. Rostovtsev, O. Kocharovskaya. (2007). Suppression of γ -photon absorption via quantum interference.
  • C. H. Raymond Ooi, Y. Rostovtsev, and M. O. Scully. (2007). Two-Photon Correlation of Radiation Emitted by Two Excited Atoms: Detailed Analysis of a Dicke Problem.
  • H. Chen, Z.E. Sariyanni, V.A. Sautenkov, Y. V. Rostovtsev, M.O. Scully. (2006). Backward Raman amplification in the gas of Rubidium dimmers.
  • N.G. Kalugin; Y.V. Rostovtsev. (2006). Efficient generation of short terahertz pulses via stimulated Raman adiabatic passage.
  • Yu. V. Rostovtsev, Z.-E. Sariyanni, and M. O. Scully. (2006). Electromagnetically Induced Coherent Backscattering Related Links: http://prola.aps.org/searchabstract/PRL/v97/i11/e113001?qid.
  • F. Vagizov, R. Kolesov R, S. Olariu, Yu. Rostovtsev, O. Kocharovskaya. (2006). Experimental observation of vibrations produced by pulsed laser beam in MgO: Fe-57 Related Links: http://apps.isiknowledge.com/WoS/CIW.cgi?SID.
  • D. Pestov, M.C. Zhi, Z.E. Sariyanni, N.G. Kalugin, R. Murawski, V.A. Sautenkov, A.V. Sokolov, Y.V. Rostovtsev, M.O. Scully. (2006). Femtosecond CARS of methanol-water mixtures.
  • E. Kuznetsova, Yu. Rostovtsev, N.G. Kalugin, R. Kolesov, O. Kocharovskaya, and M. O. Scully. (2006). Generation of coherent terahertz pulses in ruby at room temperature Related Links: http://prola.aps.org/searchabstract/PRA/v74/i2/e023819?qid.
  • V. V. Kozlov, Y. Rostovtsev, and M. O. Scully. (2006). Inducing quantum coherence via decays and incoherent pumping with application to population trapping, lasing without inversion, and quenching of spontaneous emission.
  • R.N. Shakhmuratov, J. Odeurs, S. Gheysen, Y. Rostovtsev, O. Kocharovskaya, P. Mandel. (2006). Level mixing induced transparency.
  • N.G. Kalugin, L. Wang, Z.E. Sariyanni, Y.V. Rostovtsev, M.O. Scully. (2006). Multi-phonon absorption spectra of dipicolinic acid.
  • Hui Chen, Hebin Li, Yuri Rostovtsev, Mikhail Gubin, Vladimir Sautenkov, and Marlan O. Scully. (2006). Near-infrared saturation spectroscopy of cesium molecules using diode laser.
  • Q. Sun, Yu. V. Rostovtsev, and M. S. Zubairy. (2006). Optical beam steering based on electromagnetically induced transparency Related Links: http://prola.aps.org/searchabstract/PRA/v74/i3/e033819?qid.
  • D.N. Klochkov, A.I. Artemiev, G. Kurizki, Yu.V. Rostovtsev, and M. O. Scully. (2006). Raman and Thompson regimes of amplification in a wiggler with noncollinear laser and electron beams , Related Links: http://prola.aps.org/searchabstract/PRE/v74/i3/e036503?qid.
  • E. E. Mikhailov, V. A. Sautenkov, Yu. V. Rostovtsev, A. Zhang, M. S. Zubairy, M. O. Scully, and G. R. Welch. (2006). Spectral narrowing via quantum coherence Related Links: http://prola.aps.org/searchabstract/PRA/v74/i1/e013807?qid.
  • P. Anisimov, Y. Rostovtsev. (2006). Suppression of nuclear elastic forward scattering in experiments with trains of ultrashort pulses.
  • H. Chen, V.A. Sautenkov, P.S. Hsu, G.R. Welch, Y.V. Rostovtsev, M.O. Scully. (2005). Absorption and fluorescence laser spectroscopy of Rb-2 molecules.
  • V.A. Sautenkov, Y.V. Rostovtsev, H. Chen, P. Hsu, G.S. Agarwal, M.O. Scully. (2005). Electromagnetically induced magnetochiral anisotropy in a resonant medium.
  • V.A. Sautenkov, Y.V. Rostovtsev, C.Y. Ye, G.R. Welch, O. Kocharovskaya, M.O. Scully. (2005). Electromagnetically induced transparency in rubidium vapor prepared by a comb of short optical pulses.
  • V. Kocharovsky, S. Cameron, K. Lehmann, R. Lucht, R. Miles, Y. Rostovtsev, W. Warren, G.R. Welch, M.O. Scully. (2005). Gain-swept superradiance applied to the stand-off detection of trace impurities in the atmosphere.
  • A.K. Patnaik, C.H.R. Ooi, Y. Rostovtsev, M.O. Scully. (2005). Injection time effects on LWI with microwave driven non-degenerate ground states.
  • R.N. Shakhmuratov, J. Odeurs, S. Gheysen, Y. Rostovtsev, O. Kocharovskaya, P. Mandel. (2005). Level mixing induced transparency for gamma radiation.
  • P. Anisimov, Y. Rostovtsev, O. Kocharovskaya. (2005). Mossbauer spectra narrowing by the 'magic-angle' technique.
  • S.F. Hanna, L. Wang, Z.E. Sariyanni, N.G. Kalugin, R.P. Lucht, V.A. Sautenkov, A.V. Sokolov, Y. Rostovtsev, M.O. Scully. (2005). Observation of coherent anti-Stokes Raman scattering in the phase-mismatched direction.
  • Q.Q. Sun, Y.V. Rostovtsev, J.P. Dowling, M.O. Scully, M.S. Zubairy. (2005). Optically controlled delays for broadband pulses.
  • A.E. Hill, Y.V. Rostovtsev, M.O. Scully. (2005). Practical implementation of a CO2-laser-coupled quantum heat engine.
  • V.A. Sautenkov, Y.V. Rostovtsev, M.O. Scully. (2005). Switching between photon-photon correlations and Raman anticorrelations in a coherently prepared Rb vapour.
  • C.H. R. Ooi, CHR; G. Beadie, G.W. Kattawar, J.F. Reintjes, Y. Rostovtsev, M.S. Zubairy, M.O. Scully. (2005). Theory of femtosecond coherent anti-Stokes Raman backscattering enhanced by quantum coherence for standoff detection of bacterial spores.
  • K.K. Das, Y.V. Rostovtsev, K. Lehmann, M.O. Scully. (2005). Thermodynamic and noise considerations for the detection of microscopic particles in a gas by photoacoustic Raman spectroscopy.
  • G. Beadie, Z.E. Sariyanni, Y.V. Rostovtsev, T. Opatrny, J. Reintjes, M.O. Scully. (2005). Towards a FAST CARS anthrax detector: coherence preparation using simultaneous femtosecond laser pulses.
  • Y. Rostovtsev, Z.E. Sariyanni, M.S. Zubairy, M.O. Scully. (2005). Using quantum erasure to exorcise Maxwell's demon: II. Analysis.
  • M.O. Scully, Y. Rostovtsev, Z.E. Sariyanni, M.S. Zubairy. (2005). Using quantum erasure to exorcize Maxwell's demon: I. Concepts and context.
  • Z.E. Sariyanni, Y.V. Rostovtsev, M.S. Zubairy, M.O. Scully. (2005). Using quantum erasure to exorcize Maxwell's demon: III. implementation.
  • D. Pestov, D; Zhi, MC; Sariyanni, ZE; Kalugin, NG; Kolomenskii, AA; Murawski, R; Paulus, GG; Sautenkov, VA; Schuessler, H; Sokolov, AV; Welch, GR; Rostovtsev, YV; Siebert, T; Akimov, DA; Graefe, S; Kiefer, W; Scully, MO. (2005). Visible and UV coherent Raman spectroscopy of dipicolinic acid.
  • E.E. Mikhailov V.A. Sautenkov Y.V. Rostovtsev, G.R. Welch. (2004). Absorption resonance and large negative delay in rubidium vapor with a buffer gas.
  • E.E. Mikhailov, I. Novikova, Y.V. Rostovtsev, G.R. Welch. (2004). Buffer-gas-induced absorption resonances in Rb vapor.
  • V.A. Sautenkov, C.Y. Ye, Y.V. Rostovtsev, G.R. Welch, M.O. Scully. (2004). Enhancement of field generation via maximal atomic coherence prepared by fast adiabatic passage in Rb vapor.
  • Z.E. Sariyanni, Y. Rostovtsev. (2004). Generation and propagation of a resonant CARS signal from biomolecules: application to dipicolinic acid.
  • Anisimov, Y. Rostovtsev, O. Kocharovskaya. (2004). Mossbauer spectra narrowing by spinning magnetic field.
  • A.E. Hill, Y.V. Rostovtsev, M.O. Scully. (2004). Performance projections for functional CO2 laser coupled quantum heat engines.
  • Y. Golubev, O. Kocharovskaya, Y. Rostovtsev, M.O. Scully. (2004). Sub-Poissonian three-level lasing with an m-photon coherent pump.
  • C.Y. Ye, A.S. Zibrov, Y.V. Rostovtsev, M.O. Scully. (2003). Electromagnetically induced absorption in quasi-degenerate two-level Doppler broadened atomic system.
  • Y.V. Rostovtsev Z.E. Sariyianni M.O. Scully. (2003). Extracting energy from a single heat bath via vanishing quantum coherence: III. Master equation derivation.
  • C.Y. Ye, V.A. Sautenkov, Y.V. Rostovtsev, M.O. Scully. (2003). Fast optical switching via stimulated Raman adiabatic passage.
  • S. Trendafilov, Y. Rostovtsev, M.O. Scully. (2003). Free-electron laser without inversion in the high gain regime.
  • H. Lee, Y. Rostovtsev, C.J. Bednar, A. Javan. (2003). From laser-induced line narrowing to electromagnetically induced transparency: closed system analysis.
  • E.E. Mikhailov, Y.V. Rostovtsev, G.R. Welch. (2003). Group velocity study in hot Rb-87 vapour with buffer gas.
  • Y.V. Rostovtsev A.B. Matsko N. Nayak M.S. Zubairy M.O. Scully. (2003). Improving engine efficiency by extracting laser energy from hot exhaust gas.
  • Y. Rostovtsev, S. Trendafilov, A. Artemiev, K. Kapale, G. Kurizki, M.O. Scully. (2003). Numerical experiments on free-electron lasers without inversion.
  • R. Coussement, S. Gheysen, I. Serdons, R. Callens, K. Vyvey, R.N. Shakhmuratov, J. Odeurs, P. Mandel, Y. Rostovtsev, O. Kocharovskaya. (2003). Slowing down of gamma photons.
  • R. Coussement, Y. Rostovtsev, J. Odeurs, G. Neyens, H. Muramatsu, S. Gheysen, R. Callens, K. Vyvey, G. Kozyreff, P. Mandel, R. Shakhmuratov, O. Kocharovskaya. (2002). Controlling absorption of gamma radiation via nuclear level anticrossing.
  • C.Y. Ye, A. Zibrov, and Yu. Rostovtsev. (2002). Effect of Doppler broadening on the transparency and dispersion of the generalized double dark resonance.
  • E.E. Mikhailov, Y.V. Rostovtsev, G.R. Welch. (2002). Experimental study of Stokes fields linewidth in resonant four-wave mixing in Rb vapour.
  • J. Odeurs, R. Coussement, K. Vyvey, H. Muramatsu, S. Gheysen, R. Callens, G. Neyens, I. Serdons, R.N. Shakhmuratov, Y. Rostovtsev, O. Kocharovskaya. (2002). Induced transparency for gamma radiation via nuclear level mixing.
  • Y. Rostovtsev, R. Kolesov, O. Kocharovskaya. (2002). Laser-Mossbauer spectroscopy as a new tool for nuclear transitions.
  • O. Kocharovskaya, A. Matsko, Yu. Rostovtsev. (2002). Lasing without Inversion via Spontaneous Decay.
  • A.S. Zibrov, C.Y. Ye, Y.V. Rostovtsev, A.B. Matsko, M.O. Scully. (2002). Observation of a three-photon electromagnetically induced transparency in hot atomic vapor.
  • Y. Rostovtsev, Z. Sariyianni, M.O. Scully. (2002). Photon echo pulse shape storage.
  • C.Y. Ye, Y.V. Rostovtsev, A.S. Zibrov, Y.M. Golubev. (2002). Quantum interference in atomic vapor controlled by a magnetic field.
  • A.B. Matsko, Y.V. Rostovtsev. (2002). Quantum nondemolition measurement of the photon number using Lambda-type atoms.
  • Y. Rostovtsev, O. Kocharovskaya, G.R. Welch, M.O. Scully. (2002). Slow, ultra-slow, stored and frozen light.
  • Y. Rostovtsev, O. Kocharovskaya, M.O. Scully. (2002). Stop and go control of light in hot atomic gases.
  • C.Y. Ye, A.S. Zibrov, Y.V. Rostovtsev, A.B. Matsko, M.O. Scully. (2002). Three-photon electromagnetically induced absorption and transparency in an inhomogeneously broadened atomic vapour.
  • A.S. Zibrov, A.B. Matsko, O. Kocharovskaya, Y.V. Rostovtsev, G.R. Welch, M.O. Scully. (2002). Transporting and time reversing light via atomic coherence.
  • C.Y. Ye, A.S. Zibrov, Y.V. Rostovtsev, M.O. Scully. (2002). Unexpected Doppler-free resonance in generalized double dark states.
  • Andrey B. Matsko, Yuri V. Rostovtsev, M. Fleishhauer, Marlan O. Scully. (2001). Anomalous Stimulated Brillouin Scattering via Ultraslow Light.
  • Yuri V. Rostovtsev, Gershon Kurizki, and Marlan O. Scully. (2001). Broadband optical gain via interference in the free electron laser: principles and proposed realizations.
  • Y. Rostovtsev, O. Kocharovskaya. (2001). Modification of Mossbauer spectra under the action of electromagnetic fields.
  • A.B. Matsko, Yu. Rostovtsev, O. Kocharovskaya, A. Zibrov, M.O. Scully. (2001). Nonadiabatic Approach to Quantum Optical Information Storage.
  • Y.V. Rostovtsev, A.B. Matsko, R. Shelby, M.O. Scully. (2001). Phase-matching condition between acoustic and optical waves in doped fibers.
  • A.B. Matsko, O. Kocharovskaya, Y. Rostovtsev, G.R. Welch, A.S. Zibrov, M.O. Scully. (2001). Slow, ultra-slow, stored and frozen light.
  • O. Kocharovskaya, Yu. Rostovtsev, M. Scully. (2001). Stopping light via hot atoms.
  • H. Lee, Yu. Rostovtsev, M. Scully. (2000). Asymmetries between absorption and stimulated emission in driven three-level systems.
  • A.I. Artemiev, M.V. Fedorov, Yuri V. Rostovtsev, Gershon Kurizki, and Marlan O. Scully. (2000). Free electron laser without inversion: gain optimization and implementation scheme.
  • R. Kolesov, Y. Rostovtsev, O. Kocharovskaya. (2000). Laser control of Mossbauer spectra as a way to gamma-ray lasing.
  • Andrey B. Matsko, Yuri V. Rostovtsev, Herman Z. Cummins, Marlan O. Scully. (2000). Using slow light to enhance acousto-optical effects: Application to squeezed light.
  • O. Kocharovskaya, R. Kolesov, Y. Rostovtsev. (1999). Coherent optical control of Mossbauer spectra.
  • Y.V. Rostovtsev, A.B. Matsko, M.O. Scully. (1999). Electromagnetically induced photonic band gap.
  • O. Kocharovskaya, R. Kolesov, Y. Rostovtsev. (1999). Lasing without inversion: a new path to gamma-ray laser.
  • V. Kozlov, O. Kocharovskaya, Y. Rostovtsev, and M.O. Scully. (1999). Superfluorescence without inversion in coherently driven three-level systems.
  • M. M. Kash, V. A. Sautenkov, A. S. Zibrov, L. Hollberg, George R. Welch, M. D. Lukin, Y. Rostovtsev, E. S. Fry, and M. O. Scully. (1999). Ultraslow group velocity and enhanced nonlinear optical effects in a coherently driven hot atomic gas.
  • Yu. Rostovtsev, A. Matsko, M. Scully. (1998). Electromagnetic-induced transparency and amplification of electromagnetic waves in photonic band-gap materials.
  • A.B. Matsko, Yu. V. Rostovtsev. (1998). Electromagnetic-wave propagation and amplification in overdense plasmas: Application to free electron lasers.
  • O. Kocharovskaya, Yu. Rostovtsev, and A. Imamoglu. (1998). Inversionless amplification in the three-level atoms with and without a hidden inversion in reservoir.
  • D. Nikonov, Yu. Rostovtsev, G. Sussmann. (1998). Madey's and Liouville's theorems relating to free-electron lasers.
  • A. Matsko, Y. Rostovtsev. (1998). Quantum Nondemolition Measurement of Optical Intensity via Kerr Effect in Nonlinear Heterostructure.
  • Yu. Rostovtsev, I. Khazanov. (1998). Stimulated scattering and wavefront conjugation in an inhomogeneous plasma.
  • M.O. Scully, C.J. Bednar, Yu.V. Rostovtsev. (1997). Counter-counter-intuitive quantum coherent effects.
  • R.A. Akhmedzhanov, Y.V. Rostovtsev, I.N. Polushkin. (1996). Measurement of lithium isotope composition by the interresonator laser spectroscopy technique.
  • R.A. Akhmedzhanov, I.N. Polushkin, D.B. Radishchev, Y.V. Rostovtsev. (1995). Measuring the instrumental function of a high-resolution spectrometer.
  • R.A. Ahmedzhanov, I.N. Polushkin, Yu.V. Rostovtsev. (1994). HF field diagnostics in microwaves beams by the means of Intracavity Laser Spectroscopy.
  • I.N. Polushkin I.N., and Yu.V. Rostovtsev. (1994). Investigation of Neon discharge by means of Intracavity Phase-polarisation Spectroscopy.
  • A. Protogenov, Yu. Rostovtsev, and V. Verbus. (1994). Quantum group diffusion in planar systems.
  • A.P. Protogenov, Yu.V. Rostovtsev, and V.A. Verbus. (1994). Quantum group random walks in strongly correleted 2+1 D spin systems.
  • R.A. Ahmedzhonov, I.N. Polushkin, and Yu. V. Rostovtsev. (1994). The investigation  of HF-discharge in the mixture of helium and cesium vapour by means of intracavity laser spectroscopy methods.
  • G.L. Klimchitskaya, I.N. Polushkin, Yu.V. Rostovtsev, V.V. Yazenkov. (1988). Level shifts of hydrogen fine structure in microwave discharge: theory and experiment.
  • V.N. Aleinikov, V.G. Eremin, G.L. Klimchitskaya, I.N. Polushkin, Yu.V. Rostovtsev, and V.V. Yazenkon. (1988). Structure of quasi-energy spectrum of hydrogen in a microwave field: theory and experiment.
  • R.A. Ahmedzhanov, I.N. Polushkin, Yu.V. Rostovtsev, M.V.Riabikin, Yu. M. Shagiev, V.V. Yazenkov. (1986). Experimental investigation  of  a  fine structure of hydrogen plasmas in HF fields by means of the intracavity laser spectroscopy.
  • R.A. Ahmedzhanov, I.N. Polushkin, Yu.V. Rostovtsev, A. A. Scherbacov. (1986). The high sensitivity laser interferometry of plasmas.
  • R.A. Ahmedzhanov, I.N. Polushkin, Yu.V. Rostovtsev. (1985). Experimental investigation  of spectral lines sattelites due to intense microwave fields.
  • V.M. Baev, V.F. Gamalij, Yu.V Rostovtsev, A.A. Sviridenkov. (1985). Intracavity Laser Spectroscopy Technique for studying Raman-sacttering of liquids.
  • Monograph

  • Y. Rostovtsev. (2008). Coherent Control and Nonlinear Wave Mixing in Slow Light Media , Chapter of the book SLOW LIGHT: SCIENCE AND APPLICATION, Ed. Jacob Khurgin (Taylor and Francis, 2008)..
  • D. Nikonov, Y. Rostovtsev, G. Kurizki. (2007). "Ordinary and inversionless Free-electron lasers", The Wiley Encyclopedia of Electric and Electronic Engineering, (Wiley, 2007)..
  • D. Nikonov, Y. Rostovtsev, G. Kurizki. (1999). "Free-electron lasers", The Wiley Encyclopedia of Electric and Electronic Engineering 7, 716 (Wiley, 1999)..
  • Popular Press Article

  • H. Eleuch, Y. Rostovtsev,. (2010). Analytical Solution to Sine-Gordon Equation,.
  • Pankaj K. Jha, Hichem Eleuch, and Yuri V. Rostovtsev,. (2010). Coherent control of atomic excitation using off-resonant strong few-cycle pulses, Related Links: http://pra.aps.org/abstract/PRA/v82/i4/e045805.
  • Y. Rostovtsev, H. Eleuch,. (2010). Dynamics of atoms interacting with off-resonant strong laser pulses,.
  • D.N. Klochkov, A.I. Artemyev, K.B. Oganesyan, Y.V. Rostovtsev, and C.-K. Hu,. (2010). Induced Smith-Purcell radiation,.
  • Gombojav O. Ariunbold, Michael M. Kash, Vladimir A. Sautenkov, Hebin Li, Yuri V. Rostovtsev, George R. Welch, and Marlan O. Scully,. (2010). Observation of picosecond superfluorescent pulses in rubidium atomic vapor pumped by 100-fs laser pulses, Related Links: http://pra.aps.org/abstract/PRA/v82/i4/e043421.
  • K.B. Oganesyan, M.L. Petrosyan, M.V. Fedorov, A.I. Artemiev, Y.V. Rostovtsev, M.O. Scully, G. Kurizki, C.K. Hu,. (2010). The threshold conditions for an FELWI,.

Contracts, Grants and Sponsored Research

    Grant - Research

  • Rostovtsev, Y. (Co-Principal), ""Quantum Coherence, Stand-off Spectroscopy, and Quantum Optics," TAMU," sponsored by Office of Naval Research Grant, Federal, $100000 Funded. (2007 - 2010).
  • Rostovtsev, Y. (Principal), "Sandia National Lab Research Grant," sponsored by "Analysis of heating in ion traps", UNT, Federal, $60000 Funded. (2009 - 2010).
  • Rostovtsev, Y. (Principal), "Theory of cohert compact mercury clock," sponsored by Jet Propulsion Laboratory, FED, Funded. (2021 - 2021).
  • Sponsored Research

  • Rostovtsev, Y., "A novel resonant single frequency molecular detection with high sensitivity and selectivity for gas mixtures," sponsored by GLOBAL VENTURE FUND PROPOSAL, National, $1000 Funded. (2020 - 2020).
  • Rostovtsev, Y., "A novel resonant single frequency molecular detection with high sensitivity and selectivity for gas mixtures," sponsored by GLOBAL VENTURE FUND PROPOSAL, National, Funded. (2020 - 2020).
,
Overall
Summative Rating
Challenge and
Engagement Index
Response Rate

out of 5

out of 7
%
of
students responded
  • Overall Summative Rating (median):
    This rating represents the combined responses of students to the four global summative items and is presented to provide an overall index of the class’s quality. Overall summative statements include the following (response options include a Likert scale ranging from 5 = Excellent, 3 = Good, and 1= Very poor):
    • The course as a whole was
    • The course content was
    • The instructor’s contribution to the course was
    • The instructor’s effectiveness in teaching the subject matter was
  • Challenge and Engagement Index:
    This rating combines student responses to several SPOT items relating to how academically challenging students found the course to be and how engaged they were. Challenge and Engagement Index items include the following (response options include a Likert scale ranging from 7 = Much higher, 4 = Average, and 1 = Much lower):
    • Do you expect your grade in this course to be
    • The intellectual challenge presented was
    • The amount of effort you put into this course was
    • The amount of effort to succeed in this course was
    • Your involvement in course (doing assignments, attending classes, etc.) was
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