About
Prof. Ahmed Nabih Zaki Rashed was born in Menouf city, Menoufia State, Egypt country in 23 July 1976. Received the B.Sc., M.Sc., and Ph.D. scientific degrees in the Electronics and Electrical Communications Engineering Department from Faculty of Electronic Engineering, Menoufia University in 1999, 2005, and 2010 respectively.
Prof. Ahmed Nabih Zaki Rashed (Electronics and Electrical Communications Engineering Department, Faculty of Electronic Engineering, Menouf 32951, Menoufia University, Egypt) was selected among the top 2% of scientists published by Stanford University in October 2020, October 2021, October 2022, October 2023, 2024, and Oct 2025. Currently, his job carrier is a scientific professor in Electronics and Electrical Communications Engineering Department, Faculty of Electronic Engineering, Menoufia university, Menouf. Postal Menouf city code: 32951, EGYPT. His scientific master science thesis has focused on polymer fibers in optical access communication systems. Moreover, his scientific Ph. D. thesis has focused on recent applications in linear or nonlinear passive or active in optical networks. His interesting research mainly focuses on transmission capacity, a data rate product and long transmission distances of passive and active optical communication networks, wireless communication, radio over fiber communication systems, and optical network security and management. He has published more than 228 published scientific papers in international journals and conferences.
He has published many high scientific research papers in high quality and technical international journals in the field of advanced communication systems, optoelectronic devices, and passive optical access communication networks. His areas of interest and experience in optical communication systems advanced optical communication networks, wireless optical access networks, analog communication systems, optical filters and Sensors. As well as he is editorial board member in high academic scientific International research Journals. Moreover, he is a reviewer member in high impact scientific research international journals in the field of electronics, electrical communication systems, optoelectronics, information technology and advanced optical communication systems and networks. His personal electronic mail ID (E-mail:[email protected]). His published paper under the title "High reliability optical interconnections for short range applications in high performance optical communication systems" in Optics and Laser Technology, Elsevier Publisher has achieved most popular download articles in 2013.
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Publications (335)
- High Efficiency and Reliability With Biosensing Technology for Staphylococcus aureus in Strong Confinement of Terahertz Radiation Assurance Save
- High stability static/dynamic gain in phototransistors for high speed digital optical fiber telecommunication systems based on various modulation code schemes Save
- Hybrid optical amplification units in passive optical access communication networks for the maximization of long fiber reach and average repeater spacing in upstream/downstream direction Save
- Revealing InPbBr3 Perovskite’s Potential: A DFT, Scaps and Machine Learning-Based Study for Next-Generation Solar Cells Save
- A Secure Optimal Cluster–Based Routing Protocol for Medical Data Transmission in Internet of Medical Things (IoMT) Network Integrated Wireless Sensor Network Save
- Current modulation/optical injection and feedback for semiconductor laser diode based on optical field rate and intensity rate equation model Save
- Performance Efficiency Enhancement of CIGS-Based Heterojunction Solar Cells Design and Optimization for Cost-Effective and Stable Choice for Next Generation Photovoltaic Applications Save
- Deep Cervical Cancer Prediction Network With Few Shots Learning for Cervical Cancer Prediction and Classification Save
- MoS2 and TiN surface plasmon polaritons: A new frontier for PIN photodetector design, compared to gold and silver, and their temperature response Save
- A novel doped broad band solar cell configuration for the optimization of photovoltaic performance for optimum conversion efficiency and fill factor Save