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Seyed Mohsen Izadyar
Seyed Mohsen Izadyar
Assistant professor of physics, Shahid Sattari Aeronautical University of Science and Technology
Verified email at ssau.ac.ir
Title
Cited by
Cited by
Year
Quantum dot semiconductor optical amplifier: role of second excited state on ultrahigh bit-rate signal processing
SM Izadyar, M Razaghi, A Hassanzadeh
Applied Optics 56 (12), 3599-3607, 2017
152017
Quantum dot semiconductor optical amplifier: investigation of amplified spontaneous emission and noise figure in the presence of second excited state
SM Izadyar, M Razaghi, A Hassanzadeh
Optical and Quantum Electronics 50 (1), 5, 2018
142018
Quantum dot semiconductor optical amplifier: Investigation of ultra-fast cross gain modulation in the presence of a second excited state
SM Izadyar, M Razaghi, A Hassanzadeh
Journal of Physics D: Applied Physics 53 (35), 355108, 2020
62020
Investigation of amplified spontaneous emission in quantum dot semiconductor optical amplifier in presence of second excited state
M Razaghi, SM Izadyar, KA Madanifar
2017 International Conference on Numerical Simulation of Optoelectronic …, 2017
62017
Simulation and analysis of carrier dynamics in the inas/gaas quantum dot laser, based upon rate equations
A Daraei, SM Izadyar, N Chenarani
Optics and Photonics Journal 3 (1), 112-116, 2013
62013
The application of quantum computing in defense problems, a case study of Radar placement
H Davoodi Yeganeh, M Shaghnezhad, SM Izadyar
Journal of Emerging Defense Knowledge & Research Policy 1 (4), 67-78, 2024
2024
Impact of Carrier Relaxation Time on the Performance of Quantum Dot Laser with Planar Cavities‎ Using‎ Artificial‎ Neural‎ Networks
SM Izadyar, M Eshaghnezhad, H Davoodi Yeganeh
Control and Optimization in Applied Mathematics 9 (2), 67-83, 2024
2024
Dynamics of quantum dot semiconductor laser with application in aviation and telecommunication industries
SM Izadyar, M Eshaghnezhad, A Totabi
Modern Aviation and Technology 2 (3), 78-93, 2023
2023
Simulation of Self-Assembled InGaAs/GaAs Quantum Dot Semiconductor Optical Amplifier Based upon Rate Equations
SM Izadyar, M Razaghi
Optical trapping of Rayleigh dielectric particles using the evanescent wave of two totally internally reflected interfering beams
SM Izadyar, MBM Nejhad, A Hassanzadeh
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Articles 1–10