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Bibhudutta Rout

Title: Professor

Department: Physics

College: College of Science

Curriculum Vitae

Curriculum Vitae Link

Education

  • PhD, Utkal University, 2001
    Major: Physics
    Dissertation: Growth, Characterization and Thermal Behaviour of Epitaxial Metallic Layers on Semiconductors and their Self-assembled Micro-structures
  • MS, Utkal University, 1992
    Major: Physics
    Specialization: Particle Physics Specialization
  • BS, Orissa University of Agriculture and Technology, 1990
    Major: Physics (Honors), Chemistry, Mathematics

Current Scheduled Teaching

PHYS 1410.400General Physics ISpring 2025
PHYS 6950.763Doctoral DissertationFall 2024
PHYS 1410.400General Physics IFall 2024 Syllabus
PHYS 6940.751Individual ResearchFall 2024

Previous Scheduled Teaching

PHYS 6950.765Doctoral DissertationSpring 2024
PHYS 1410.100General Physics ISpring 2024 Syllabus SPOT
PHYS 6940.758Individual ResearchSpring 2024
PHYS 5910.753Special ProblemsSpring 2024
PHYS 6950.763Doctoral DissertationFall 2023
PHYS 1410.100General Physics IFall 2023 Syllabus SPOT
PHYS 6940.751Individual ResearchFall 2023
PHYS 5910.773Special ProblemsFall 2023
PHYS 1410.100General Physics ISpring 2023 Syllabus SPOT
PHYS 6940.758Individual ResearchSpring 2023
PHYS 5910.757Special ProblemsSpring 2023
PHYS 1410.100General Physics IFall 2022 Syllabus SPOT
PHYS 6940.751Individual ResearchFall 2022
PHYS 5910.773Special ProblemsFall 2022
PHYS 6910.750Special ProblemsFall 2022
PHYS 1410.001General Physics ISummer 5W1 2022 Syllabus SPOT
PHYS 1410.201General Physics ISummer 5W1 2022 Syllabus
PHYS 1410.100General Physics ISpring 2022 Syllabus SPOT
PHYS 5910.754Special ProblemsSpring 2022
PHYS 1410.003General Physics IFall 2021 Syllabus SPOT
PHYS 1410.100General Physics IFall 2021 Syllabus SPOT
PHYS 4951.778Honors College Capstone ThesisFall 2021
PHYS 5750.001Selected Topics in Materials PhysicsFall 2021 Syllabus SPOT
PHYS 4950.762Senior ThesisFall 2021
PHYS 4955.006Senior Thesis CapstoneFall 2021
PHYS 4900.778Special ProblemsFall 2021
PHYS 4910.778Special ProblemsFall 2021 Syllabus
PHYS 1410.100General Physics ISummer 5W1 2021 Syllabus SPOT
PHYS 6950.001Doctoral DissertationSpring 8W1 2021
PHYS 1410.001General Physics ISpring 2021 Syllabus SPOT
PHYS 1410.003General Physics ISpring 2021 Syllabus SPOT
PHYS 4955.014Senior Thesis CapstoneSpring 2021
PHYS 5900.778Special ProblemsSpring 2021
PHYS 6950.778Doctoral DissertationFall 2020
PHYS 1410.001General Physics IFall 2020 Syllabus SPOT
PHYS 1410.201General Physics IFall 2020 Syllabus
PHYS 3996.002Honors College Mentored Research ExperienceFall 2020
PHYS 3010.001Modern PhysicsFall 2020 Syllabus SPOT
PHYS 3010.201Modern PhysicsFall 2020 Syllabus SPOT
PHYS 2900.778Special ProblemsFall 2020
PHYS 5910.778Special ProblemsFall 2020
PHYS 6950.001Doctoral DissertationSummer 3W1 2020
PHYS 6950.778Doctoral DissertationSummer 5W2 2020
PHYS 1410.001General Physics ISummer 5W1 2020 SPOT
PHYS 1410.201General Physics ISummer 5W1 2020 Syllabus SPOT
PHYS 6950.778Doctoral DissertationSpring 2020
PHYS 1420.002General Physics IISpring 2020 Syllabus
PHYS 1420.202General Physics IISpring 2020 Syllabus
PHYS 6940.778Individual ResearchSpring 2020
PHYS 4950.008Senior ThesisSpring 2020
PHYS 4955.014Senior Thesis CapstoneSpring 2020
PHYS 2900.778Special ProblemsSpring 2020
PHYS 6950.778Doctoral DissertationFall 2019
PHYS 3030.501Laboratory in Modern PhysicsFall 2019
PHYS 3010.001Modern PhysicsFall 2019 Syllabus SPOT
PHYS 3010.201Modern PhysicsFall 2019 Syllabus SPOT
PHYS 4420.001Physical OpticsFall 2019 Syllabus SPOT
PHYS 4420.201Physical OpticsFall 2019 Syllabus SPOT
PHYS 5910.778Special ProblemsFall 2019
PHYS 1410.001General Physics ISummer 5W1 2019 Syllabus SPOT
PHYS 1410.201General Physics ISummer 5W1 2019 Syllabus SPOT
PHYS 6950.778Doctoral DissertationSpring 2019
PHYS 6940.778Individual ResearchSpring 2019
PHYS 3030.501Laboratory in Modern PhysicsSpring 2019 Syllabus
PHYS 3010.001Modern PhysicsSpring 2019 Syllabus SPOT
PHYS 3010.201Modern PhysicsSpring 2019 Syllabus SPOT
PHYS 4955.014Senior Thesis CapstoneSpring 2019
PHYS 6950.778Doctoral DissertationFall 2018
PHYS 1410.001General Physics IFall 2018 Syllabus SPOT
PHYS 1410.201General Physics IFall 2018 Syllabus
PHYS 1420.001General Physics IIFall 2018 Syllabus SPOT
PHYS 1420.201General Physics IIFall 2018 Syllabus
PHYS 6940.778Individual ResearchFall 2018
PHYS 4950.762Senior ThesisFall 2018
PHYS 4900.778Special ProblemsFall 2018
PHYS 4950.701Senior ThesisSummer 10W 2018
PHYS 6950.778Doctoral DissertationSpring 2018
PHYS 1420.001General Physics IISpring 2018 Syllabus SPOT
PHYS 1420.002General Physics IISpring 2018 Syllabus SPOT
PHYS 1420.201General Physics IISpring 2018 Syllabus SPOT
PHYS 1420.202General Physics IISpring 2018 Syllabus SPOT
PHYS 6940.778Individual ResearchSpring 2018
PHYS 1420.001General Physics IIFall 2017 Syllabus SPOT
PHYS 1420.201General Physics IIFall 2017 Syllabus SPOT
PHYS 6940.778Individual ResearchFall 2017
PHYS 4420.001Physical OpticsFall 2017 Syllabus SPOT
PHYS 4420.201Physical OpticsFall 2017 Syllabus SPOT
PHYS 1420.001General Physics IISpring 2017 Syllabus SPOT
PHYS 1420.002General Physics IISpring 2017 Syllabus SPOT
PHYS 1420.201General Physics IISpring 2017
PHYS 1420.202General Physics IISpring 2017
PHYS 6940.778Individual ResearchSpring 2017
PHYS 5910.778Special ProblemsSpring 2017
PHYS 1420.001General Physics IIFall 2016 Syllabus SPOT
PHYS 1420.201General Physics IIFall 2016
PHYS 6940.778Individual ResearchFall 2016
PHYS 6950.778Doctoral DissertationSummer 10W 2016
PHYS 6950.778Doctoral DissertationSpring 2016
PHYS 1410.001General Physics ISpring 2016 Syllabus SPOT
PHYS 1410.002General Physics ISpring 2016 Syllabus SPOT
PHYS 1410.201General Physics ISpring 2016 SPOT
PHYS 1410.202General Physics ISpring 2016 SPOT
PHYS 6940.778Individual ResearchSpring 2016
PHYS 5900.778Special ProblemsSpring 2016
PHYS 5910.778Special ProblemsSpring 2016
PHYS 6950.778Doctoral DissertationFall 2015
PHYS 5900.778Special ProblemsFall 2015
PHYS 5910.778Special ProblemsFall 2015
PHYS 6950.778Doctoral DissertationSpring 2015
PHYS 1420.005General Physics IISpring 2015 Syllabus
PHYS 1420.205General Physics IISpring 2015
PHYS 4950.008Senior ThesisSpring 2015
PHYS 4955.011Senior Thesis CapstoneSpring 2015
PHYS 6950.778Doctoral DissertationFall 2014
PHYS 1710.002MechanicsFall 2014 Syllabus
PHYS 1710.211MechanicsFall 2014
PHYS 1710.212MechanicsFall 2014
PHYS 1710.213MechanicsFall 2014
PHYS 4950.007Senior ThesisFall 2014
PHYS 4955.006Senior Thesis CapstoneFall 2014
PHYS 4910.778Special ProblemsFall 2014
PHYS 5910.778Special ProblemsFall 2014
PHYS 5920.766Research Problems in Lieu of ThesisSummer 5W2 2014
PHYS 5930.003Research Problems in Lieu of ThesisSummer 5W2 2014
PHYS 4950.002Senior ThesisSummer 5W1 2014
PHYS 4955.003Senior Thesis CapstoneSummer 5W2 2014
PHYS 6950.778Doctoral DissertationSpring 2014
PHYS 1410.002General Physics ISpring 2014 Syllabus
PHYS 6940.778Individual ResearchSpring 2014
PHYS 4950.008Senior ThesisSpring 2014
PHYS 4160.001Experimental Physics IIFall 2013 Syllabus
PHYS 4160.501Experimental Physics IIFall 2013
PHYS 6940.778Individual ResearchFall 2013
PHYS 5910.778Special ProblemsFall 2013
PHYS 6950.778Doctoral DissertationSpring 2013
PHYS 1420.005General Physics IISpring 2013 Syllabus
PHYS 1420.205General Physics IISpring 2013 Syllabus
PHYS 1440.501General Physics Laboratory IISpring 2013
PHYS 1440.502General Physics Laboratory IISpring 2013
PHYS 1440.503General Physics Laboratory IISpring 2013
PHYS 1440.504General Physics Laboratory IISpring 2013
PHYS 6940.778Individual ResearchSpring 2013
PHYS 5910.778Special ProblemsSpring 2013
PHYS 6950.778Doctoral DissertationFall 2012
PHYS 6940.778Individual ResearchFall 2012
PHYS 3030.501Laboratory in Modern PhysicsFall 2012
PHYS 3010.001Modern PhysicsFall 2012 Syllabus
PHYS 3010.201Modern PhysicsFall 2012 Syllabus
PHYS 4950.007Senior ThesisFall 2012
PHYS 4955.001Senior Thesis CapstoneFall 2012
PHYS 2910.778Special ProblemsFall 2012
PHYS 5910.778Special ProblemsFall 2012
PHYS 6940.778Individual ResearchSummer 5W2 2012
PHYS 6950.778Doctoral DissertationSpring 2012
PHYS 3030.501Laboratory in Modern PhysicsSpring 2012
PHYS 3010.001Modern PhysicsSpring 2012 Syllabus
PHYS 3010.201Modern PhysicsSpring 2012 Syllabus
PHYS 5910.778Special ProblemsSpring 2012
PHYS 6950.778Doctoral DissertationFall 2011
PHYS 1410.001General Physics IFall 2011 Syllabus
PHYS 1410.201General Physics IFall 2011 Syllabus
PHYS 5900.778Special ProblemsFall 2011
PHYS 5910.778Special ProblemsFall 2011
PHYS 6950.778Doctoral DissertationSpring 2011
PHYS 1315.002Introduction to the World of PhysicsSpring 2011 Syllabus
PHYS 5910.778Special ProblemsSpring 2011
PHYS 6950.778Doctoral DissertationFall 2010
PHYS 1420.001General Physics IIFall 2010 Syllabus
PHYS 1420.201General Physics IIFall 2010 Syllabus
PHYS 5900.778Special ProblemsFall 2010
PHYS 2910.772Special ProblemsSummer 10W 2010
PHYS 6950.778Doctoral DissertationSpring 2010
PHYS 1410.005General Physics ISpring 2010 Syllabus
PHYS 1410.205General Physics ISpring 2010 Syllabus
PHYS 6940.778Individual ResearchSpring 2010
PHYS 5910.778Special ProblemsSpring 2010
PHYS 6950.778Doctoral DissertationFall 2009
PHYS 4980.001Experimental CourseFall 2009 Syllabus
PHYS 4980.501Experimental CourseFall 2009
PHYS 5610.002Selected Topics in Modern PhysicsFall 2009
PHYS 5910.778Special ProblemsFall 2009
PHYS 6900.778Special ProblemsFall 2009
PHYS 1420.001General Physics IISummer 5W2 2009
PHYS 1420.201General Physics IISummer 5W2 2009
PHYS 2910.772Special ProblemsSummer 10W 2009
PHYS 4910.753Special ProblemsSummer 5W2 2009
PHYS 5910.767Special ProblemsSummer 5W1 2009
PHYS 5910.778Special ProblemsSummer 5W1 2009
PHYS 6950.778Doctoral DissertationSpring 2009
PHYS 1420.005General Physics IISpring 2009
PHYS 1420.205General Physics IISpring 2009
PHYS 6940.778Individual ResearchSpring 2009
PHYS 6910.778Special ProblemsSpring 2009
PHYS 6950.778Doctoral DissertationFall 2008
PHYS 1410.001General Physics IFall 2008
PHYS 1410.201General Physics IFall 2008
PHYS 5910.778Special ProblemsFall 2008
PHYS 6910.778Special ProblemsFall 2008
PHYS 1420.001General Physics IISummer 5W2 2008
PHYS 1420.201General Physics IISummer 5W2 2008
PHYS 6940.778Individual ResearchSummer 5W1 2008
PHYS 1420.005General Physics IISpring 2008
PHYS 1420.205General Physics IISpring 2008
PHYS 6940.778Individual ResearchSpring 2008
PHYS 6910.778Special ProblemsSpring 2008
PHYS 1420.001General Physics IIFall 2007
PHYS 1420.201General Physics IIFall 2007

Published Intellectual Contributions

    Abstracts and Proceedings

  • Glass, G.A., Byers, T.A., Kaur Saini, D., Bowen, C.T., Rout, B. (2023). Application of Proton Induced X-ray Emission (PIXE) spectroscopy for quantifying biological markers. ASMS 71st Conference, Houston TX (4-8 June 2023) American Society for Mass Spectrometry.
  • Kaur Saini, D., Byers, T.A., Nook, C., Sharma, M., Parashar, M., Glass, G.A., Rout, B. Trace-elemental analysis of herbal plant leaves using Particle Induced X-ray Emission.
  • Batalapalli, V.K., Mohanty, S., Kougianos, E., Baniya, B.K., Rout, B. (2022). Hardware-Assisted Robust Blockchain for Sustainable Simultaneous Device and Data Security in Smart Healthcare. Conference paper for IEEE Computer Society Annual Symposium on VLSI Aliathon Resort, Pafos, Cyprus, July 4-6, 2022 (ISVLSI 2022).
  • Uddin, M., Myers, T.A., Mirshams, R.A., Rout, B., Siller Carrillo, H.R. (2022). Influence of proton irradiation on strain rate sensitivity and microstructure in L-PBF fabricated 17-4 PH stainless steels. 837 37196. 14th International Topical Meeting on Nuclear Applications of Accelerators. https://www.ans.org/meetings/wm2021/session/view-911/
  • Manuel, J.E., Rout, B., Szilasi, S.Z., Bohara, G., Deaton, J., Luyombya, H., Briski, K.P., Glass, G.A. (2014). Fish gelatin thin film standards for biological application of PIXE. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. B 332 4. Elsevier. http://www.elsevier.com/locate/nimb
  • P.R. Poudel, K. Hossain, J Li, B. Gorman, A. Neogi, B. Rout, J.L. Duggan, F.D. McDaniel, Mater. (2008). Characterization and light emission properties of osmium silicides synthesized by low energy ion implantation.
  • Alexander D. Dymnikov, Gary A. Glass. (2007). Electrostatic Focusing for High Energy Ion Nanobeams.
  • Gary A. Glass, Bibhudutta Rout, Alexander D. Dymnikov, Elia V. Eschenazi, Richard R. Greco, Daniel P. Zachry. (2006). High Energy Focused Ion Beam Nanoprobes: Design and Applications in "Growth, Modification, and Analysis by Ion Beams at the Nanoscale", edited by Joegr K. N. Lindner, Marcel Toulemonde, William J. Weber, Barney L. Doyle.
  • B. Rout, R. D. Greco, A. D. Dymnikov, J. R. Reinhardt, J. Peeples, M. Kamal, M. Lentz, G. A. Glass. (2005). Maskless micromachining with high-energy focused ion beams.
  • B. Rout, C. Cher, K. Grant, A. Roberts, D. N. Jamieson. (2002). Fabrication of periodic grating structures in Optical fibers, using nuclear microprobe.
  • Book Chapter

  • Durant, B.K., Sellers, I.R., Rout, B., Bailey, S.G., Hepp, A.F., Ferguson, D.C., Raffaelle, R.P., Durbin, S.M. (2023). Chapter Seven - Perovskite solar cells on the horizon for space power systems. Bailey - Photovoltaics for Space. 175-195. Amsterdam, Elsevier. https://doi.org/10.1016/B978-0-12-823300-9.00011-X
  • Bathalapalli, V.K., Mohanty, S., Kougianos, E., Baniya, B.K., Rout, B. (2022). PUFchain 3.0: Hardware-Assisted Distributed Ledger for Robust Authentication in the Internet of Medical Things. Internet of Things. IoT through a Multi-disciplinary Perspective. 23-40. Springer International Publishing. http://dx.doi.org/10.1007/978-3-031-18872-5_2
  • Conference Proceeding

  • Bathalapalli, Venkata K. V. V., Mohanty, S., Kougianos, E., Iyer, V., Rout, B. (2023). iTPM: Exploring PUF-based Keyless TPM for Security-by-Design of Smart Electronics. 2023 IEEE Computer Society Annual Symposium on VLSI (ISVLSI). 1-6.
  • Bathalapalli, V., Mohanty, S., Kougianos, E., Iyer, V., Rout, B. (2023). PMsec 2.0: A Security-By-Design Solution for Doctor’s Dilemma Problem in Smart Healthcare. Proceedings of the OITS International Conference on Information Technology (OCIT).
  • Venkata K. V. V. Bathalapalli, Mohanty, S., Kougianos, E., Iyer, V., Rout, B. (2023). PUFchain 4.0: Integrating PUF-based TPM in Distributed Ledger for Security-by-Design of IoT. Proceedings of the Great Lakes Symposium on VLSI 2023, GLSVLSI 2023, Knoxville, TN, USA, June 5-7, 2023. 231--236. ACM. https://doi.org/10.1145/3583781.3590206
  • Afshari, H., Chacon, S.A., Durant, B.K., Crawford, R., Rout, B., Eperon, G.E., Sellers, I.R. (2022). Radiation tolerance, high temperature stability, and self-healing of triple halide perovskite solar cells. 2022 (2022 IEEE 49th Photovoltaics Specialists Conference (PVSC)) 3. IEEE. 10.1109/PVSC48317.2022.9938508
  • Sellers, I.R., Afshari, H., Durant, B.K., Sourabh, S., Yeddu, V., Bamidele, M.T., Singh, S., Rout, B., Eperon, G.E., Kim, D.Y., Kirmany, A.R., Luther, J.M., Whiteside, V.R. (2022). The radiation tolerance, self-healing, and stability of perovskite solar cells. 2022 (PC11996) PC1199601. SPIE. https://doi.org/10.1117/12.2608876
  • Yanambaka, V., Mohanty, S., Kougianos, E., Baniya, B.K., Rout, B. (2021). Veda-PUF: A PUF based on Vedic Principles for Robust Lightweight Security for IoT. 2021 IEEE International Symposium on Smart Electronic Systems (iSES) (Formerly iNiS). 400-405.
  • Rout, B. (2021). Proton Radiation Tolerance of Wide and Narrow Band Gap Perovskite Solar Cells. 2021 1111-1114. IEEE.
  • Mangal S. Dhoubhadel, Wickramaarachchige J. Lakshantha, Sherard Lightbourne, Francis D'Souza, Bibhudutta Rout and Floyd D. McDaniel. (2015). http://dx.doi.org/10.1063/1.4927180
  • Dhoubhadel, M.S., Lakshantha, W.J., Lightbourne, S., D’Souza, F., Rout, B., McDaniel, F.D. (2015). Improvement in the photocurrent collection due to enhanced absorption of light by synthesizing staggered layers of silver nanoclusters in silicon. AIP Conference Proceedings. 1671 (1) 020003.
  • Bibhudutta Rout, Mangal S. Dhoubhadel, Prakash R. Poudel, Venkata C. Kummari, Wickramaarachchige J. Lakshantha, Jack E. Manuel, Gyanendra Bohara, Szabolcs Z. Szilasi, Gary A. Glass, Floyd D. McDaniel. (2014). http://dx.doi.org/10.1142/S2010194514601471
  • Zihe Gao, Gautham Ragunathan, Bradley Thompson, Matthew T. Johnson, Bibhudutta Rout, and Kent D. Choquette. (2014). http://www.opticsinfobase.org/abstract.cfm?URI=CLEO_SI-2014-SF1G.4
  • Mangal S. Dhoubhadel, Bibhudutta Rout, Wickramaarachchige J. Lakshantha, Sushanta K. Das, Francis D'Souza, Gary A. Glass, Floyd D. McDaniel. (2014). http://dx.doi.org/10.1063/1.4890698
  • Joseph Kimball, Dymtro Shumilov, Badri Maliwa, T.W. Zerda, Bibhu Rout, Rafal Fudala, Sangram Raut, Ignacy Gryczynski, Eric Simanek, Julian Borejdo, Ryan Rich, Irina Akopova, and Zygmunt Gryczynski. (2014). http://dx.doi.org/10.1117/12.2045376
  • Dhoubhadel, M.S., Rout, B., Lakshantha, W.J., Das, S.K., D’Souza, F., Glass, G.A., McDaniel, F.D. (2014). Investigation of structural and optical properties of Ag nanoclusters formed in Si (100) after multiple implantations of low energies Ag ions and post-thermal annealing at a temperature below the Ag-Si eutectic point. AIP Conference Proceedings. 1607 (1) 16–23.
  • Bibhudutta Rout, Mangal S. Dhoubhadel, Prakash R. Poudel, Venkata C. Kummari, Bimal Pandey, Naresh T. Deoli, Wickramaarachchige J. Lakshantha, Stephen J. Mulware, Jacob Baxley, Jack E. Manuel, Jose L. Pacheco, Szabolcs Szilasi, Duncan L. Weathers et al.. (2013). An overview of the facilities, activities, and developments at the University of North Texas Ion Beam Modification and Analysis Laboratory (IBMAL).
  • Deoli, N.T., Kummari, V.C., Pacheco, J.L., Duggan, J.L., Glass, G.A., McDaniel, F.D., Reinert, T., Rout, B., Weathers, D.L., McDaniel, F.D., others. (2013). Investigation of beam transmission in A 9SDH-2 3.0 MV NEC pelletron tandem accelerator. AIP Conference Proceedings. 1525 (1) 214–219.
  • Naresh T. Deoli, Venkata C. Kummari, Jose L. Pacheco, Jerome L. Duggan, Gary A. Glass, Floyd D. McDaniel, Tilo Reinert, Bibhudutta Rout and Duncan L. Weathers. (2013). Investigation of beam transmission in a 9SDH-2 3.0 MV NEC Pelletron® tandem accelerator.
  • A. K. Singh, K.G.Grycznski, B. Rout, J. Li, F. McDaniel, A. Neogi, G. Sahu, H. Lenka, D.P. Mahapatra. (2009). Enhanced UV Light Emission in Silicon nanoparticles.
  • Alexander D. Dymnikov, Gary A. Glass, Bibhudutta Rout, Johnny F. Dias. (2009). Optimal Parameters of High Energy Ion Microprobe Systems Comprised of Lafayette Lenses.
  • A. Singh, K. Gryczynski, M. Dhoubadel, B. Rout, F. D. McDaniel and A. Neogi. (2009). Surface Plasmon Enhanced Radiative Decay Engineering of Direct Bandgap in Ion-implanted Polarized Silicon Quantum Dots.
  • Singh, A.K., Grycznski, K.G., Li, J., McDaniel, F.D., Rout, B., Neogi, A., Sahu, G., Lenka, H., Mahapatra, D.P. (2009). Enhanced UV emission in silicon nanoparticles. Nanotechnology 2009: Fabrication, Particles, Characterization, MEMS, Electronics and Photonics - Technical Proceedings of the 2009 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2009. 1 570-573. https://api.elsevier.com/content/abstract/scopus_id/70450207264
  • Poudel, P.R., Hossain, K., Li, J., Gorman, B., Neogi, A., Rout, B., Duggan, J.L., McDaniel, F.D. (2008). Characterization and light emission properties of osmium suicides synthesized by low energy ion implantation. Materials Research Society Symposium Proceedings. 1066 217-222. https://api.elsevier.com/content/abstract/scopus_id/62949197263
  • Journal Article

  • Rout, B. (2024). PUFchain 3.0: Hardware-Assisted Distributed Ledger for Robust Authentication in Healthcare Cyber–Physical Systems. Sensors. https://doi.org/10.3390/s24030938
  • Kirmani, A.R., Byers, T.A., Ni, Z., Rout, B. (2024). Unraveling radiation damage and healing mechanisms in halide perovskites using energy-tuned dual irradiation dosing. Nature Communications. 15 (1) 696. Denton, Nature. 1155 Union Circle # 311427
  • Rout, B. (2023). Probing the Interfacial Properties of ACIGS Solar Cells with Targeted Proton Irradiation. Other. http://www.scopus.com/inward/record.url?eid=2-s2.0-85179750702&partnerID=MN8TOARS
  • Rout, B. (2023). Radiation tolerance and self-healing in triple halide perovskite solar cells. Other. 2023 2300756. https://doi.org/10.1063/5.0158216
  • Glass, G.A., Rout, B., Byers, T.A., Manuel, J.E., Ponette-Gonzalez, A.G., Gill, T.E. (2023). Analysis of rain-deposited dust on polysulfone membranes using proton-induced X-ray emission spectroscopy. Microchemical Journal. 192 (2023) Elsevier. http://dx.doi.org/10.1016/j.microc.2023.108928
  • Rout, B. (2023). FACsPb Triple Halide Perovskite Solar Cells with Thermal Operation over 200 °C. ACS Energy Letters. 8 (5) 2408–2413. Washington DC, American Chemical Society. https://doi.org/10.1021/acsenergylett.3c00551
  • Kirmani, A.R., Ostrowski, D.P., VanSant, K.T., Byers, T.A., Bramante, R.C., Heinselman, K.N., Tong, J., Stevens, B., Nemeth, W., Zhu, K., Sellers, I.R., Rout, B., Luther, J.M. (2023). Metal oxide barrier layers for terrestrial and space perovskite photovoltaics. Nature Energy. 8 (2) 191-202. Springer Nature. http://dx.doi.org/10.1038/s41560-022-01189-1
  • Uddin, M.J., Mirshams, R.A., Rout, B., Siller Carrillo, H.R. (2022). Small-Scale Mechanical Testing of Proton Irradiated L-Pbf 17-4 Ph Stainless Steels. Other. 16. https://ssrn.com/abstract=4230973
  • Batalapalli, V.K., Mohanty, S., Kougianos, E., Baniya, B.K., Rout, B. (2022). PUFchain 2.0: Hardware-Assisted Robust Blockchain for Sustainable Simultaneous Device and Data Security in Smart Healthcare. SN Computer Science. 3 (5) 19.
  • Kirmany, A.R., Durant, B.K., Grandidier, J., Haegel, N., Kelzenberg, M.D., Lao, Y.M., McGehee, M.D., McMillon-Brown, L., Ostrowski, D.P., Peshek, T.J., Rout, B., Sellers, I.R., Steger, M., Walker, D., Wilt, D.M., VanSant, K.T., Luther, J.M. (2022). Countdown to perovskite space lunch: Guidelines to performing relevant radiation-hardness experiments. Joule. 2022 (6) 1015-1031. CellPress, Elsevier. https://doi.org/10.1016/j.joule.2022.03.004
  • Uddin, M.J., Siller, H.R., Mirshams, R.A., Byers, T.A., Rout, B. (2022). Effects of proton irradiation on nanoindentation strain-rate sensitivity and microstructural properties in L-PBF 17-4 PH stainless steels. Materials Science and Engineering: A. 837 142719.
  • Dasari, S., Sharma, A., Byers, T.A., Glass, G.A., Srivilliputhur, S.G., Rout, B., Banerjee, R. (2021). Proton irradiation induced chemical ordering in an Al0. 3CoFeNi high entropy alloy. Applied Physics Letters. 119 (16) 161907. AIP Publishing LLC.
  • Dasari, S., Sharma, A., Byers, T.A., Glass, G.A., Srivilliputhur, S., Rout, B., Banerjee, R. (2021). Proton irradiation induced chemical ordering in an Al0.3CoFeNi high entropy alloy. Applied Physics Letters. 119 161907. College Park, MD, American Institute of Physics. https://aip.scitation.org/doi/pdf/10.1063/5.0065875
  • Young, J.M., Byers, T.A., Lang, E.J., Singh, S., Glass, G.A., Hattar, K., Rout, B. (2021). Synthesis of magnesiowüstite nanocrystallites embedded in an amorphous silicate matrix via low energy multiple ion implantations. Other. 206 105319. Amsterdam, Elsevier BV. http://dx.doi.org/10.1016/j.pss.2021.105319
  • Durant, B.K., Afshari, H., Sourabh, S., Yeddu, V., Bamidele, M.T., Singh, S., Rout, B., Eperon, G.E., Kim, D.Y., Sellers, I.R. (2021). Radiation Stability of Mixed Tin-Lead Halide Perovskites: Implications for Space Applications. Solar Energy Materials and Solar Cells. 230 111232 (9 pages). Amsterdam, Elsevier. https://www.sciencedirect.com/science/article/abs/pii/S0927024821002762?via%3Dihub
  • Afshari, H., Durrant, B.K., Brown, C.R., Hossain, K., Poplavskyy, D., Rout, B., Sellers, I.R. (2021). CIGS solar cells for outer planetary space applications: the effect of proton irradiation. Golden, Colorado, IEEE Journal of Photovoltaics.
  • Durrant, B.K., Afshari, H., Singh, S., Rout, b., Eperon, G.E., Sellers, I.R. (2021). Tolerance of Perovskite Solar Cells to Targeted Proton Irradiation and Electronic Ionization Induced Healing. ACS Energy Letters. 6 (7) 2362−2368. Washington, D.C., American Chemical Society. https://pubs.acs.org/doi/10.1021/acsenergylett.1c00756
  • Singh, S., Rout, B. (2021). Simulation study of surface sputtering and distribution of ions in silicon due to low-energy high-fluence cobalt irradiation. Surfaces & Interfaces. 24 101035. Amsterdam, Elsevier. https://doi.org/10.1016/j.surfin.2021.101035
  • Lakshantha, W.J., Kumar, M., Som, T., McDaniel, F.D., Rout, B. (2021). Growth of Nanocrystalline Graphite on Sapphire by Implantation of Large Carbon Clusters from SNICS Source. Nuclear Instruments and Methods in Physics Research B. 488 64-69. Amsterdam, Netherlands, Elsevier. https://doi.org/10.1016/j.nimb.2020.12.005
  • Sahoo, S., Malik, S.K., Sahu, M.C., Joseph, A., Rout, B., Gupta, S.K., Rout, B., Pradhan, G.K., Sahoo, S. (2020). Thermal conductivity of free-standing silicon nanowire using Raman spectroscopy. Nanotechnology. N/A. 31 505701. Bristol, Institute of Physics Science.
  • Afshari, H., Durant, B.K., Brown, C.R., Hossain, K., Poplavskyy, D., Rout, B., Sellers, I.R. (2020). The role of metastability and concentration on the performance of CIGS solar cells under Low-Intensity-Low-Temperature conditions. Solar Energy Materials and Solar Cells. No. 212 (110571) 10. Amsterdam, Elsevier. https://www.sciencedirect.com/science/article/pii/S0927024820301744
  • Das, P., Rout, B., Manju, U., Chatterjee, S. (2020). Tunable Wettability and Conductivity of the Graphene Oxide Surface with Insights from Density Functional Theory and Molecular Dynamics Investigations. Global Journal of Physical Chemistry. No. 124 (19) 10541-10549 (2020) 9. Washington, DC, American Chemical Society. https://pubs.acs.org/doi/abs/10.1021/acs.jpcc.0c01166
  • Holliday, R.L., Young, J.M., Singh, S., McDaniel, F.D., Rout, B. (2020). Feasibility of Formation of Ge1-x-ySixSny Layers With High Sn Concentration via Ion Implantation. Other. No. 2 (7) 6. Chandigarh, J. Nucl. Phys. Mat. Sci. Rad. A./ Chitkara University. https://jnp.chitkara.edu.in/index.php/jnp
  • Singh, S., Young, J.M., Jones, D.C., Berman, D., Rout, B. (2020). Observation of Room Temperature Superparamagnetic Behavior of Fe5Si3 nanocrystals synthesized via 50 keV Fe ion implantation in Silicon. Applied Physics A: Materials Science & Processing. 126 (3) 232. Heidelberg, Springer. https://link.springer.com/content/pdf/10.1007/s00339-020-3417-8.pdf
  • Chatterjee, S., Webre, W., Patra, S., Rout, B., Glass, G.A., D'Souza, F., Chatterjee, S. (2020). Achievement of superior efficiency of TiO2 nanorod-nanoparticle composite photoanode in dye sensitized solar cell. Journal of Alloys and Compounds. N/A. 826 (154188) 8. Amsteradam, Elsevier.
  • El Bouanani, M., Perez, J., Philipose, U., Neogi, A., , Rout, B. (2020). Rapid ambient degradation of monolayer MoS2 after heating in air. 2D Materials.
  • Yao, K., Femi-Oyetoro, J.D., Yao, S., Jiang, Y., El Bouanani, L., Jones, D., Ecton, P., Philipose, U., El Bouanani, M., Rout, B., Neogi, A., Perez, J. (2019). Rapid ambient degradation of monolayer MoS2 after heating in air. 2D Materials. 7 015024. Denton, IOP. Department of Physics, 1155 Union Circle #311427
  • Lakshantha, W.J., McDaniel, F.D., Rout, B. (2019). Formation and characterization of embedded Fe3Si binary structures in Si. Journal of Applied Physics. 125 (19) 195301. AIP Publishing. http://dx.doi.org/10.1063/1.5091541
  • Lakshantha, W.J., McDaniel, F.D., Rout, B. (2019). Formation and characterization of embedded Fe3Si Binary structures in Si. Journal of Applied Physics. 125 (19) 195301. American Institute of Physics.
  • Young, J.M., Singh, S., Byers, T.A., Jones, D.C., Rout, B. (2019). Synthesis of crystalline phases in space silicate analogues with helium ion irradiation. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 443 79-83. Elsevier.
  • Glass, G.A., Manuel, J., Byers, T.A., Szolas, S.Z., Phillips, D.Z., Dymnikov, A.D., Reinert, T., Rout, B. (2018). Note: Performance of a Novel Electrostatic Quadrupole Doublet for Nuclear Microprobe Application. Review of Scientific Instruments. 89 3. American Institute of Physics.
  • Jones, D.C., Young, J.M., Lakshantha, W.J., Singh, S., Byers, T.A., Weathers, D.L., McDaniel, F.D., Rout, B. (2018). Redistribution of Nickel Ions Embedded within Indium Phosphide Via Low Energy Dual Ion Implantations. 6 (1) 9-15. Chandigarh, Punjab, Chitkara University. http://dspace.chitkara.edu.in/xmlui/handle/123456789/732
  • Mulware, S.J., Rout, B., Reinert, T., Dasgupta-Schubert, N. (2018). Quantitative Analysis of the Effect of Carbon Nanotubes on the Iron (Fe) Uptake by Corn Roots. 3 (4) 82-86. WILMINGTON, DE, American Association for Science and Technology. http://www.aascit.org/journal/ijabe
  • Manuel, J.E., Szilasi, S.Z., Phillips, D., Dymnikov, A.D., Reinert, T., Rout, B., Glass, G.A. (2017). Design and construction of an electrostatic quadrupole doublet lens for nuclear microprobe application. Other. 404 21-28.
  • Lakshantha, W.J., Singh, S., McDaniel, F.D., Rout, B. (2017). Formation of Fe-Co-Si Structure in Fe and Co Implanted Si Substrate. MRS Advances. n/a. 2017 2309-2314. Warrendale, PA, Materials Research Society. https://www.cambridge.org/core/services/aop-cambridge-core/content/view/000EC500876FEFC2D178C3FCC14C8B33/S2059852117002717a.pdf/formation_of_fecosi_structure_in_fe_and_co_implanted_si_substrate.pdf
  • Rout, B. (2017). Ion beam radiation effects on natural halite crystals. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 409 (1) 216-220. Elsevier. http://dx.doi.org/10.1016/j.nimb.2017.03.062
  • Ecton, P., Beatty, J.D., Verbeck, G.F., Lakshantha, W., Rout, B., Perez, J. (2016). Low-energy electron irradiation of preheated and gas-exposed single-wall carbon nanotubes. Applied Surface Science. 387 822--827. North-Holland. Impact factor: 4.439
  • Dhoubhadel, M.S., Rout, B., Lakshantha, W.J., McDaniel, F.D. (2016). Investigation of the Saturation of Elemental Concentration in the Depth Profile of Low Energy Silver Ion Implants in Silicon. 4 (1) 251-264. Chandigarh, Punjab, Chitkara University.
  • Gao, Z., Thompson, B.J., Ragunathan, G., Johnson, M.T., Rout, B., Chapman, K.D. (2016). Bottom-Emitting Coherently Coupled Vertical Cavity Laser Arrays. 28 (4) 513-515. NY, IEEE. http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=7328711&isnumber=7379025
  • P. R. Poudel, P. P. Poudel, J. A. Paramo, Y. M. Strzhemechny, B. Rout and F. D. McDaniel. (2015). http://link.springer.com/article/10.1007/s00339-014-8784-6/fulltext.html
  • Venkata C. Kummari , Tilo Reinert , Weilin Jiang, Floyd D. McDaniel, Bibhudutta Rout. (2014). http://dx.doi.org/10.1016/j.nimb.2014.02.023
  • Jack E. Manuel, Bibhudutta Rout, SzabolZ. Szilasi, Gyanendra Bohara, James Deaton, Henry Luyombya, Karen P. Briski, Gary A. Glass. (2014). http://dx.doi.org/10.1016/j.nimb.2014.02.025
  • Wickramaarachchige J. Lakshantha, Venkata C. Kummari, Tilo Reinert, Floyd D. McDaniel, Bibhudutta Rout. (2014). http://dx.doi.org/10.1016/j.nimb.2014.02.024
  • Stephen J. Mulware, Jacob D. Baxley, Bibhudutta Rout, Tilo Reinert. (2014). http://dx.doi.org/10.1016/j.nimb.2014.02.037
  • P. R. Poudel, P. P. Poudel, B. Rout, M. El Bouanani, F. D. McDaniel. (2012). An XPS study to investigate the dependence of carbon ion fluences in the formation of buried SiC.
  • P. R. Poudel, J. A. Paramo, D. R. Diercks, Y. M. Strzhemechny, B. Rout, F. D. McDaniel. (2012). Effects of thermal annealing on the Structural and Optical Properties of Carbon-Implanted SiO2.
  • . Sahu, H. P. Lenka, D. P. Mahapatra, B. Rout and M. P. Das. (2012). Low-temperature UV photoluminescence of ion beam synthesized Si nanoclusters embedded in Si.
  • P. R. Poudel, P. P. Poudel, B. P. Sharma, J. Y. Hwang, M. El Bouanani, B. Rout, F. D. McDaniel. (2012). Synthesis of buried layer of β-SiC in Si (100) by multiple energy carbon ion implantations and post thermal annealing.
  • P.R. Poudel, B. Rout, D. R. Diercks, J.A. Paramo, Y. M. Strzhemechny, F.D. McDaniel. (2011). Effects of Thermal Annealing in the Formation of Buried β-SiC by Ion Implantation.
  • P. R. Poudel, B. Rout, D. R. Diercks, Y. M. Strzhemechny, F. D. McDaniel. (2011). Fluence dependant formation of β-SiC by ion implantation and thermal annealing.
  • . Hossain, V.C. Kummari, O.W. Holland, B. Rout, J.L. Duggan, and F.D.McDaniel. (2010). Compositional and Strain Characterization of Ion-Beam-Synthesized GexSi1-x Thin Films.
  • P.R.Poudel, B.Rout, K. Hossain, M. S. Dhoubhadel, V.C. Kummari, A. Neogi, F.D. McDaniel. (2010). Formation and Characterization of Ion Beam Assisted Nanosystems in Silicon.
  • G. Sahu, H.P. Lenka, D.P. Mahapatra, B. Rout, F.D. McDaniel. (2010). Narrow band UV emission from direct bandgap Si nanoclusters embedded in bulk Si.
  • A. Boag, R.J. Taylor, T.H. Muster, N. Goodman, D. McCulloch, C. Ryan, B. Rout, D. Jamieson, A.E. Hughes. (2010). pit formation on AA2024-T3 in a NaCl environment.
  • Poudel, P.R., Rout, B., Hossain, K.M., Dhoubhadel, M.S., Kummari, V.C., Neogi, A., McDaniel, F.D. (2010). Formation and characterization of ion beam assisted nanosystems in silicon. Other. 56 (4) 297-301. https://api.elsevier.com/content/abstract/scopus_id/78649536468
  • K. Kitts, Y. Choi, P. J. Eng, S. K. Ghose, B. Rout. (2009). Application of Grazing Incidence X-ray fluorescence Technique to Discriminate and Quantify Implanted Solar Wind.
  • Gary A. Glass, Alexander D. Dymnikov, Louis M. Houston, Johnny F. Dias, Bibhudutta Rout. (2009). Direct etching of SiO2 and Al2O3 by 900 keV gold ions.
  • Gary A. Glass, Johnny F. Dias, Alexander D. Dymnikov, Bibhudutta Rout. (2008). 900 keV gold ion sputter etching of silicon and metals.
  • Gary A. Glass, Alexander D. Dymnikov, Louis M. Houston, Jared LeBlank, Johnny F. Dias. (2008). Magnetic quadrupole doublet focusing system for high energy ions.
  • Alexander D. Dymnikov, Bibhudutta Rout, Gary A. Glass. (2007). Combination of magnetic and electric quadrupole lenses as zoom sextuplet ion microprobe focusing system with minimum spherical aberration.
  • B. Rout, M. Kamal, A. D. Dymnikov, D. P. Zachry and G. A. Glass. (2007). Fabrication of micro-structured tunnels in PMMA using P-beam writing.
  • G.A. Glass, A. D. Dymnikov, B. Rout, and D.P. Zachry. (2007). High Energy Focused Ion Beam Technology and Applications at the Louisiana Accelerator Center.
  • Bibhudutta Rout, Alexander D. Dymnikov, Daniel P. Zachry, Elia V. Eschenazi, Yongqiang Q. Wang, Richard R. Greco and Gary A. Glass. (2007). High Energy Heavy Ion Beam Lithography in Silicon.
  • Bibhudutta Rout, Richard R. Greco, Daniel P. Zachry, Alexander D. Dymnikov, Gary A. Glass. (2006). Patterned microstructures formed with MeV Au implantation in Si(100).
  • J. Kamila, S. Roy, K. Bhattacharjee, B. N. Dev, R. Guico, J. Wang, B. Rout, A. W. Haberl, P. Ayyub, P.V. Satyam. (2006). Proton Microbeam irradiation effects on PtBA polymer.
  • Wendong Wang, Yuanjia Hong, Minghui Yu, Bibhudutta Rout, Gary A. Glass, Jinke Tang. (2006). Structure and magnetic properties of pure and Gd-doped HfO2 thin films.
  • J. Kamila, S. Roy, K. Bhattacharjee, B. N. Dev, R. Guico, J. Wang, B. Rout, A. W. Haberl, P. Ayyub, P.V. Satyam. (2006). Proton Microbeam irradiation effects on PtBA polymer. Bulletin of Materials Science. 29 (2) 101-105. Spinger.
  • G. A. Glass, B. Rout, A. D. Dymnikov, R. Greco, M. Kamal, J. A. Peeples, J. A. Reinhardt. (2005). High energy focused ion beam lithography using P-beam writing.
  • D. N. Jamieson, R. Szymanski, B. Rout and R. Brenn. (2005). Retrocutting nuclear microprobe quadruple lens profiles to improve field strength.
  • A. D. Dymnikov, G. A. Glass. (2005). The position of a scanner and its influence on the beam spot size in a nuclear microprobe.
  • V. Millar, C.I. Pakes, S. Prawer, B. Rout, and D.N. Jamieson. (2005). Thin-film resists for registration of single-ion impacts.
  • R. Greco, N. Pastore, A. D. Dymnikov, G. A. Glass. (2005). Upgradating a Duoplasmatron ion source to produce high brightness beam for nuclear microprobe applications with a tandem accelerator.
  • A. D. Dymnikov, G. A. Glass. (2005). Zoom quadrupole focusing systems producing an image of an object.
  • A. Trinchi, W. Wlodarski, S. Santucci, D. Di Claudio, M. Passacantando, C. Cantalinim B. Rout, S. J Ippolito, K. Kalantar-Zadeh and G. Sberveglieri. (2004). Microstructural Characterisation of RF Magnetron Sputtered ZnO Thin Films on SiC.
  • S. Chakraborty, J. Kamila, B. Rout ,B. Satpati, P.V. Satyam, B. Sundaravel and B. N. Dev. (2004). Shape variation in epitaxial microstructures of gold silicide grown on Br-passivated Si(111) surfaces.
  • S. K. Toh, D. G. McCulloch, J. du Plessis, P.J.K. Paterson, A. E. Hughes, D. Jamieson, B. Rout, J.M. Long, A.Stonham. (2003). An investigation of the native oxide of aluminum alloy 7475-T7651 using XPS, AES, TEM, EELS, GDOES and RBS.
  • K. J. Grant, A. Roberts, D. N. Jamieson, C. Cher, B. Rout. (2003). Long period gratings in multimode fiber fabricated with high-energy ion implantation.
  • D. N. Jamieson, T. Hopf, C. G. Ryan. (2003). Phase correlations of elemental maps using nuclear microscopy.
  • M. J. J. Van den Putte, B. Rout, R. Szymanski, D. N. Jamieson, J. F. J. Van den Brand. (2003). The Amsterdam Quintuplet Nuclear Microprobe.
  • N. K. Puri, M. Hajivaliei, S. C. Bedi, N. Singh, I. M. Govil, M. L. Garg, D. K. Handa, K. L. Govil, B. Rout, V. Vijayan. (2003). The Elemental analysis of ancient Indian coins of Kusanas and early medieval period using proton induced X-ray emission (PIXE) technique.
  • J. Kamila, M. Runde, B. N. Dev. (2002). Clustering in Pb thin films on Si(111) and Pb-induced Si surface ordering.
  • C. Yang, D. N. Jamieson, S. M. Hearne, C. I. Pakes, B. Rout, E. Gauja, A. J. Dzurak, R.G. Clark. (2002). Ion-beam-induced-charge characterization of particle detectors.
  • V. Miller, C. I. Pakes, A. Cimmino, D. Brett, D. N. Jamieson, S. Prawer, C. J. Yang, B. Rout, R. P. McKinnon, A. S. Dzurak, R. G. Clark. (2002). Nanoscale fabrication using single-ion impacts.
  • J Hendriks, D N Jamieson, R Szymanski, D Milliken and S X Dou. (2002). Nuclear microprobe analysis of U-doped (Bi,Pb)2Sr2Ca2Cu3Oy/Ag superconducting tapes.
  • I. E. Kieft, D. N. Jamieson, B. Rout, R. Szymanski, A. S. Jamieson. (2002). PIXE cluster analysis of ancient ceramics from North Syria.
  • D N Jamieson, B Rout, R Szymanski, P Spizzirri, A Sakellariou, W Belcher and C G Ryan. (2002). The new Melbourne nuclear microprobe system.
  • A. Trinchi, K. Galatsis, Y.X. Li, W. Wlodarski, S. P. Russo, J. du Plesis. (2002). Properties of Ga-Zn based mixed oxides for gas sensing applications. 190 225-228. IEEE.
  • J Kamila, S K Ghose, D P Mahapatra and B N Dev. (2001). Characterization of microstructures formed on MeV ion-irradiated silver films on Si(111) surfaces.
  • S. K. Ghose, S. Dey, D. P. Mahapatra, B. N. Dev, H. Bakhru, A. W. Haberl. (2001). Development of an ion micro-beam facility at Institute of Physics, Bhubaneswar.
  • S K Ghose, D K Goswami, B Rout, B N Dev, G Kuri and G Materlik. (2001). Ion-irradiation-induced mixing, interface broadening and period dilation in Pt/C multilayers.
  • T. K. Chini, S. K. Ghose, B. Rout, B. N. Dev, M. Tanemura, and F. Okuyama. (2001). Redistribution of Ni implanted into InP.
  • S K Ghose, D P Mahapatra, B N Dev, H Bakhru and A W Haberl. (2001). Status of ion microbeam facility at the Institute of Physics, Bhubaneswar, India.
  • Amal K. Das, S. K. Ghose, J. Kamila, B. Rout and B. N. Dev. (2000). Growth of self-assembled nanostructures on sufaces.
  • J. Kamila, S. K. Ghose, D. P. Mahapatra and B. N. Dev. (2000). Microstructures on MeV ion irradiated epitaxial Ag films on Si(111) surfaces: Scattering and emission studies with an ion microscope.
  • B Sundaravel, Amal K Das, S K Ghose, K Sekar, D P Mahapatra and B N Dev. (2000). Self-assembled gold silicide wires on bromine-passivated Si(110) surfaces.
  • B. Sundaravel, Amal K. Das, S. K. Ghose, B. Rout and B. N. Dev. (1999). Improvement of Ag(111) epitaxy on Si(111) by MeV Si+ irradiation and ion micro-beam analysis of thermally induce morphology.
  • S. K. Ghose, G. Kuri, A. K. Das, B. Rout, D. P. Mahapatra, B. N. Dev. (1999). Radiation damage and surface modification of GaAs(001) MeV C+ and C2+ co-implantation with Ga2+.
  • Soma Dey, G. Kuri, B.Rout, Shikha Varma. (1999). Sb implantation in Si(100) : Channeling and damage studies.
  • T. K. Chini, S. R. Bhattacharya, D. Basu, B. Rout, S. Ghose, B. Sundaravel, B. N. Dev, F. Okuyama, M. Kaneko, J. Mater. (1998). High energy Ni Implantation.
  • Bhubaneswar, B. Rout, S. K. Ghose, B. Sundaravel, G. Kuri, D. P. Mahapatra and B. N. Dev, P. Sen, H. Bakhru and A. W. Haberl. (1998). Micro Ion-beam facility at Institute of Physics.
  • S. Dey, G. Kuri, B. Rout, S. Varma. (1998). Range profile and lattice location of MeV implant in Si (100).
  • G. Kuri, B. Rout, Shikha Varma. (1997). Characterization of MeV implant of Antimony in Si(100); Soma Dey.
  • A. Kumar, H. Bakhru, A. W. Haberl, B. Rout. (1997). Improved High Energy Microbeam techniques.
  • B. Sundaravel , K. Sekar, P. V. Satyam, G. Kuri, B. Rout, S. K. Ghose. (1996). Channeling studies on self-assembled Au4Si islands on Br-passivated Si(111) surfaces.
  • P. V. Satyam, K. Sekar, G. Kuri, B. Sundaravel, S. K. Ghose, B. Rout, D. P. Mahapatra and B. N.. (1996). Characterization of ion beam synthesized epitaxial Si/CoSi2/Si(111) system with ion and x-ray scattering techniques.
  • P. V. Satyam, B. Sundaravel, S. K. Ghose, B. Rout, K. Sekar, D. P. Mahapatra and B. N.. (1996). Determination of strain in a buried epitaxial CoSi2 layer in Si(111) by MeV ion scattering and x-ray rocking curve methods.
  • G. Kuri, B. Rout, B. Sundaravel, D. P. Mahapatra and B. N. Dev. (1996). Effect of MeV Au ion implantation on the composition of GaAs upon vacuum annealing PIXE and XRF studies.
  • G.Kuri, B.Sundaravel, B. Rout, D.P.Mahapatra and B.N.Dev. (1996). MeV As and Au ion implantation in Si, GaP, GaAs, InSb and LiNbO3 : Study of range and lattice location.
  • B. Sundaravel, P. V. Satyam, G. Kuri, B. Rout, S. K. Ghose, K. Sekar, D. P. Mahapatra and B. N. Dev. (1996). Thermal instability in Thin films: Self-assembling epitaxial island.
  • P. V. Satyam, S. K. Ghose, B. Sundaravel, B. Rout, and B. N.. (1996). Thin film characterization with grazing incidence X-ray reflectometry.
  • P. V. Satyam, D.Bahr, S. K. Ghose, G. Kuri, B. Sundaravel, B. Rout and B. N. Dev.. (1995). A high precision technique using x-ray reflectivity for the measurement of surface and interface roughness.

Contracts, Grants and Sponsored Research

    Grant - Research

  • Rout, B. (Principal), Mohanty, S. (Co-Principal), "Excellence in Research: iMed-Sec: Exploring Hardware-Assisted Solutions for Energy-Efficient Low-Overhead Security and Privacy for the Internet-of-Medical-Things," sponsored by National Science Foundation, Federal, $150000 Funded. (2021 - 2025).
  • Xiao, T. (Principal), Rout, B. (Co-Principal), "Machine learning applications in high-energy particle physics through the GlueX and PANDA collaborations," sponsored by Division of Research & Innovation, University of North Texas, $10000 Funded. (2022 - 2023).
  • Rout, B. (Principal), "Scalable Fabrication of Ternary Transition Metal Silicide Nano-systems using Low energy Multiple Ion Implantation," sponsored by Center for Integrated Nanotechnologies, Sandia National Laboratory Users Facility Program - 10 days of TEM characterization and 10 days of in-situ ion irradiation beam time, Federal, Funded. (2020 - 2021).
  • Rout, B., "Implantation of Titanium in Galium Oxide," sponsored by DOD-ARL, Federal, $3000 Funded. (2020 - 2021).
  • Rout, b., "Scalable Fabrication of Ternary Transition Metal Silicide Nano-systems using Low Energy Multiple Ion Implantation," sponsored by College of Science (SEED Funding) University of North Texas, University of North Texas, $9000 Funded. (2020 - 2021).
  • Rout, B. (Principal), Mukherjee, S. (Principal), "AMMPI-NUEP-SEED FUNDING-2019-An Integrated Approach to Design and Development of Irradiation Resistant Concentrated Alloys for Generation IV Nuclear Reactor Applications," sponsored by Advance Materials and Manufacturing Process Institute, University of North Texas, $20000 Funded. (2019 - 2020).
  • Rout, B. (Principal), "Investigation of Source of Urban Air Pollution in India," sponsored by UNT-International, University of North Texas, $6000 Funded. (2017 - 2018).
  • Rout, B. (Principal), Mohanty, S. (Co-Principal), "Excellence in Research: iMed-Sec: Exploring Hardware-Assisted Solutions for Energy-Efficient Low-Overhead Security and Privacy for the Internet-of-Medical-Things," sponsored by Grambling State University, NFP, Funded. (2021 - 2024).
  • Rout, B. (Principal), "Implantation of 900 keV Titanium ions in Gallium Oxide," sponsored by UES, Inc., IND, Funded. (2020 - 2022).
  • Rout, B. (Principal), "Scalable Fabrication of Ternary Transition Metal Silicide Nano-systems using Low energy Multiple Ion Implantation," sponsored by Center for Integrated Nanotechnologies, Sandia National Laboratory Users Facility Program - 10 days of TEM characterization and 10 days of in-situ ion irradiation beam time, Federal, Funded. (2020 - 2021).
  • Rout, B. (Co-Principal), Glass, G.A. (Principal), "Electrostatic Microprobe Lens System," sponsored by National Electrostatics Corp., IND, Funded. (2019 - 2020).
  • Sponsored Research

  • Rout, B. (Principal), "Collaborative Research: PIC: Slow Wave Enhanced Electrooptically Tuned Michelson Interferometer Biosensor for On-Chip Polarization Interferometry," sponsored by National Science Foundation, Federal, $160260 Funded. (2022 - 2025).
  • Glass, G.A. (Principal), Rout, B. (Co-Principal), "Development of Microprobe Lens System," sponsored by National Electrostatic Corporation, Private, $46000 Funded. (2018 - 2020).
  • Rout, B. (Principal), Glass, G.A. (Co-Principal), "Three dimensional heterojunction nano- structures for photovoltaic applications," sponsored by Indo-US Science & Technology Forum, International, $15000 Funded. (2017 - 2018).
  • Rout, B. (Principal), Glass, G.A. (Co-Principal), "Three dimensional heterojunction nano- structures for photovoltaic applications," sponsored by Indo-US Science & Technology Forum, International, Funded. (2017 - 2018).
,
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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