About
Dr. Ajay Yadav is currently working as an assistant professor at Bennett University, Greater Noida, India. He completed his PhD at the National Institute of Technology Jamshedpur, India. He received his M.Tech. degree in VLSI Design and Embedded Systems from the National Institute of Technology Arunachal Pradesh, India, in 2021, and his B.Tech. degree in Electronics and Communication Engineering from Chaudhary Charan Singh University, Meerut, Uttar Pradesh, India, in 2019. He was awarded the Vice Chancellor's Gold Medal during his B.Tech. and the Institute Gold Medal during his M.Tech. His research interests include optical fiber communication, optical logic devices, optical switching, holography, optoelectronic systems, and embedded systems.
Employment
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Bennett University Assistant Professor2026 - Present
Education
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National Institute of Technology Jamshedpur PhD2021 - 2025
Projects & Funding
Projects & funding information is unavailable.
Publications (14)
- High-performance optical 3 bit Gray-code counter using T-flip-flop circuits with GaAlAs directional couplers Save
- Design and implementation of 3D all-optical multilogic unit using advanced MRR techniques Save
- Design and Analysis of Laser to Fibre Coupling System Using Holographic Optical Element Save
- Emulation of Optical Binary to Gray Code Converter and Even/Odd Parity Checker Circuit Using Electro-optic Effect-Based Directional Couplers Save
- Next-generation high-performance complex optical sequential circuits: an electro-optic modulation in GaAlAs directional couplers Save
- Design and analysis of an electro-optic effect-driven directional coupler for realization of an optical BCD to excess-3 code converter circuit Save
- Harnessing XPM effects in non-linear directional couplers for 4-bit gray code conversion and even parity verification Save
- 3D-Modelling and Analysis of All-Optical Carry Look-Ahead Adder Circuits using Nonlinear Structures Save
- Harnessing Electro-optic Effect in Directional Coupler for Implementation of Optical Digital Data Transmission Circuits Save
- Realization of All-Optical Full Adder and Subtractor Circuit based on Cross-Phase Modulation in a Phase-Shifted Fiber Bragg Grating Save