Publications
Journal Articles
15. Coherent control of higher-order nonlinearities in triple quantum dot molecules – J. Mahto, R. Hazra, N. Borgohain and R. Mukherjee, Eur. Phys. J. Plus 141, 844 [2026] (IF–2.9, Q2); https://link.springer.com/article/10.1140/epjp/s13360-026-08070-0
14. Switching of amplification to absorption with enhanced Kerr nonlinearity in double quantum wells via Fano interference - R. Mukherjee, N. Borgohain and R. Hazra, J. Opt. (IOP) 28, 7 [2026] (IF–2.7, Q2) https://iopscience.iop.org/article/10.1088/2040-8986/ae7c11/meta
13. Dynamic control of supercontinuum generation in semiconductor quantum wells through modulated nonlinearity and dispersion - N. Borgohain, R. Hazra, R. Mukherjee and N. Dasgupta, J. Nonlinear Opt. Phys. Mater. 2650032, 25 [2026] (IF-1.4, Q3) https://www.worldscientific.com/doi/abs/10.1142/S0218863526500323
12. Adjustable Triple Electromagnetically Induced Transparency and Kerr Nonlinearity in Five-Level Coupled Quantum Wells – R. Mukherjee, R. Hazra and N. Borgohain, Eur. Phys. J. D 79, 135 [2025]. (IF – 1.5, Q3)
https://epjd.epj.org/articles/epjd/abs/2025/11/10053_2025_Article_1080/10053_2025_Article_1080.html
11. Self-phase-modulation of non-Gaussian pulses in multiple quantum wells by a tunneling mechanism – R. Mukherjee, N. Borgohain, R. Hazra, K. Bose and A. Chatterjee, Phys. Rev. A. 112, 013537 [2025]. (IF – 2.6, Q1); https://journals.aps.org/pra/abstract/10.1103/8vqj-rvsh
10. Effect of higher-order nonlinearities and dispersions on modulation instability in semiconductor quantum dots – N. Borgohain, A. Shyam, R. Mukherjee, N. Akula and R. Hazra, Chaos Soliton Fract. 199, 116902 [2025]. (IF – 5.6, Q1); https://doi.org/10.1016/j.chaos.2025.116902
9. Controllable nonlinearities in Landau quantized graphene – A. Aryan, R. Mukherjee, R. Hazra, N. Borgohain, and N. Garg, J. Appl. Phys. 137, 113104 [2025]. (IF–2.7, Q2); https://doi.org/10.1063/5.0249987
8. Phase-sensitive slow light in semiconductor quantum dots – A. Shyam, N. Borgohain, R. Mukherjee, and R.Hazra, Opt. Commun. 569, 130867 [2024]. (IF–2.5, Q2); https://doi.org/10.1016/j.optcom.2024.130867
7. Controlling behaviour of transparency and absorption in three-coupled multiple quantum wells via spontaneously generated coherence – R. Mukherjee, R. Hazra, and N. Borgohain, Sci. Rep. 14, 8197 [2024]. (IF – 3.9, Q1); https://doi.org/10.1038/s41598-024-58818-w
6. Phase-sensitive large Kerr nonlinearity in semiconductor quantum wells – M. Kalita, R. Mukherjee, N. Borgohain, and R. Hazra, Mod. Phys. Lett. B 38, 2450238 [2024]. (IF – 2.2, Q2); https://www.worldscientific.com/doi/10.1142/S0217984924502385
5. Theoretical study of coherent optical phenomena in a three lasers driven four-level ladder-type system involving a Rydberg state – R. Hazra, Md. M. Hossain, Laser Phys. 32, 065207 [2022] (IF– 1.2, Q3); https://doi.org/10.1088/1555-6611/ac641d
4. A theoretical study of the group refractive index ng in a four-level inverted Y-type system formed by 87Rb atom-lasers radiation interaction – R. Hazra, Md. M. Hossain, Quantum Electron. 51, 730 [2021] (IF – 1.2, Q3); https://iopscience.iop.org/article/10.1070/QEL17522
3. Effect of spontaneously generated coherence (SGC) on the line-shapes of absorption, transparency, dispersion and group index of a four-level inverted Y-type atom-lasers coupling system – R. Hazra, Md. M. Hossain, Eur. Phys. J. Plus 136, 761 [2021] (IF–2.9, Q2); https://doi.org/10.1140/epjp/s13360-021-01709-0
2. Study of multi-window electromagnetically induced transparency (EIT) and related dispersive signals in V-type systems in the Zeeman sublevels of 87Rb-D2 hyperfine transitions – R. Hazra, Md. M. Hossain, J. Phys. B: At. Mol. Opt. Phys. 53, 23 [2020] (IF–1.5, Q2); https://doi.org/10.1088/1361-6455/abbd32
1. Study of atomic populations, electromagnetically induced transparency and dispersive signals in a Λ-type system under various decoherence effects – R. Hazra, Md. M. Hossain, Ukr. J. Phys. 64, 3 [2019]; (IF–0.6, Q3); https://doi.org/10.15407/ujpe64.3.197
Conference Proceedings
2. Spontaneously generated coherence (SGC) in a three-level V-type multiple quantum well nanostructures – R. Hazra, R. Mukherjee, and N. Borgohain, AIP Conference Proceedings 3170, 030001 (2024). [https://doi.org/10.1063/5.0216071]
1. Simulation of double electromagnetically induced transparency (EIT) in a four-level V-type system: A comparative study of probe and pump transmissions – R. Hazra, Md. M. Hossain, AIP Conference Proceedings 2072, 020012 (2019). [https://doi.org/10.1063/1.5090252]
Conference and Symposium Presentations
Oral Presentations
8. Electromagnetically Induced Transparency: A machine learning perspective – International Conference on Prospective Ideas in Experimental and Theoretical Physics (PIETP-2026), Acharya Prafulla Chandra College, Kolkata, India (Jan 13 and Jan 15, 2026).
7. Realising tunable optical responses in Landau quantized graphene – International Conference on Advanced Materials and Computational Physics (ICAMCP-2025), SIMATS Engineering College, Chennai, India (Aug 08, 2025).
6. Manipulating optical coherence in an atomic system under the effect of an external static magnetic field – International Conference on Interdisciplinary Sciences (ICIS-2024), Malla Reddy Engineering College for Women, Secunderabad, India (Oct 25-26, 2024).
5. Exploring optical coherence with Rydberg state – International Conference on Recent and Technology Advances in Physics and Material Science (ICRATPMS-2024), Department of Physics, Arka Jain University, India (Apr 29-30, 2024).
4. Study of various coherent nonlinear phenomena in a five-level V-type atomic system – National Conference on Atomic, Molecular and Nano Sciences (NCAMNS-2019), Department of Physics, Aliah University, India (Apr 3-4, 2019).
3. Study of coherent optical properties in four- and five-level V-type systems formed by Zeeman sublevels of 87Rb-D2 hyperfine transitions – One Day Seminar on the Frontiers of Light-Matter Interactions, Department of Physics, Aliah University, India (Jan 14, 2019).
2. Simulation of Double Electromagnetically Induced Transparency (EIT) in a Four-level V-type system: A Comparative study of probe and pump transmissions – National Conference on Frontiers in Modern Physics (NCFMP-18), Adamas University, Kolkata, India (Aug 16-17, 2018).
1. Study of EIT resonances in a three-level lambda Λ-type system – Recent Trends in Atomic, Molecular and Material Sciences (RTAMMS-17), Adamas University, Kolkata, India (Sept 16, 2017).
Poster Presentations
2. Spontaneously Generated Coherence in a three-level V-type multiple quantum well nanostructures – 7th International Conference on Nanoscience and Nanotechnology (ICONN-2023) (Virtual Conference), SRM Institute of Science and Technology, Chennai, India (Mar 27-29, 2023).
1. Line shape analysis of Electromagnetically Induced Transparency (EIT) in a three-level Λ-type system under various decoherence effects – International Conference on Light and Light-based Technologies (ICLLT-16), Tezpur University, Assam, India (Nov 26-28, 2016).
Book Chapter
2. The role of quantum computing and its societal impact – 10thInternational Conference on Technical Advancements in Computer Science and Engineering (ICTACSE-2026) [ISBN: 978-93-490224-8-5]
1. Quantum Computers: Real or Myth? – Future Forward Research: A Quarterly Compendium [ISBN: 978-81-974913-1-3]
Invited Talk
1. Spontaneously generated coherence (SGC) as a quantum knob: Controlling light-matter interactions in multi-level atomic and semiconductor nanostructures – Atomic, Molecular and Optical Physics at the Institute of Physical Sciences, UNAM (ICF-UNAM), Mexico (June 16, 2026).