Assoc. Prof. Dr. Farrokh Sarreshtedari, Department of Physics, University of Tehran, Iran
Dr. Farrokh Sarreshtedari is an Associate Professor in the Department of Physics at the University of Tehran, Iran 🇮🇷. With a Ph.D. in Physics, his research specializes in atomic spectroscopy, laser-matter interactions, cold atom interferometry, SQUID-based magnetometry, and superconducting devices 🌌🔍. He has published extensively in leading journals, including Physical Review, Review of Scientific Instruments, and IEEE Transactions on Applied Superconductivity 📚. His innovative work spans quantum optics, magnetometry, and numerical modeling. Dr. Sarreshtedari continues to contribute significantly to experimental and theoretical physics, mentoring students and collaborating internationally
Publication Profile
Google Scholar
🔍 Research Focus
Dr. Farrokh Sarreshtedari’s research centers on quantum optics, laser-atom interactions, atomic population dynamics, and SQUID-based magnetometry ⚛️🧲. His work involves population transfer in two-level systems, Landau-Zener transitions, and stimulated Raman adiabatic passage, highlighting advanced quantum control methods using chirped laser pulses and RF excitation 💡📡. He also specializes in non-destructive evaluation (NDE) using finite element modeling (FEM) and superconducting quantum interference devices (SQUIDs) for precise magnetic field measurements in noisy environments 🌌📊. His interdisciplinary expertise bridges quantum physics, atomic spectroscopy, and applied superconductivity, contributing to both theoretical insights and experimental innovations
Conclusion
Assoc. Prof. Dr. Farrokh Sarreshtedari’s prolific publication record across high-impact journals, continuous advancement in quantum optics, magnetometry, and applied superconductivity, and cross-disciplinary collaborations make him exceptionally well-qualified for the Best Researcher Award. His research has both theoretical depth and real-world impact, aligning perfectly with the award’s purpose to recognize transformative scientific contributions.
Publication Top Notes
📘 Optimization of NDE characterization parameters for a RF-SQUID based system using FEM analysis – 🔁 Cited by 26 – 📅 2009
📘 Tunable Landau-Zener transitions using continuous-and chirped-pulse-laser couplings – 🔁 Cited by 21 – 📅 2017
📘 A superconductor THz modulator based on vortex flux flow – 🔁 Cited by 13 – 📅 2009
📘 Investigation of robust population transfer using quadratically chirped laser interacting with a two-level system – 🔁 Cited by 12 – 📅 2019
📘 Investigation of the laser controlled Landau–Zener mechanism in a coupled quantum system – 🔁 Cited by 12 – 📅 2017
📘 Analytical model for the extraction of flaw-induced current interactions for SQUID NDE – 🔁 Cited by 10 – 📅 2011
📘 Optimized design of low-cost, sensitive and versatile Vibrating Sample Magnetometer – 🔁 Cited by 9 – 📅 2012
📘 Environmental noise cancellation for high-TC SQUID-based magnetocardiography – 🔁 Cited by 8 – 📅 2017
📘 High Tc SQUID based magnetocardiography system in unshielded environment – 🔁 Cited by 8 – 📅 2015
📘 Coherent population transfer in Rydberg potassium atom via stimulated Ramanadiabatic passage – 🔁 Cited by 8 – 📅 2005
📘 Robust population transfer using finite chirping method – 🔁 Cited by 7 – 📅 2019
📘 Population engineering of cesium fine structure using chirped Gaussian laser pulse – 🔁 Cited by 7 – 📅 2019