The project aims to contribute to the advancement of photonic-crystal-based EOS/WSS technologies for next-generation communication networks. By designing and evaluating these switches, we can explore new possibilities for achieving efficient and flex
Section: Engineering Sciences (Research Project)
Related:
Investigation of
Investigation of soliton dynamics through multi-core photonic crystal fiber couplers and array waveguides for efficient all-optical logic adders, subtractors and soliton based quantum computing
Research Project › Physical Sciences
Preparation and
Preparation and Studies of Energy Efficient Semiconducting Quntum Dots- Liquid Crystal Composites for Next Generation Display Devices
Research Project › Physical Sciences
Design and
Design and Development of Two-Dimensional Chalcogenides for Next-Generation Memory Devices
Research Project › Physical Sciences
Cost-effective, Scalable,
Cost-effective, Scalable, and Reproducible 2D Hybrid Perovskites for High-Efficient Transistor and Photodetector Technologies.
Research Project › Chemical Sciences
Nanoscale Quantum
Nanoscale Quantum Emitters at Telecom Wavelengths for Scalable and Integrated Quantum Technologies
Research Project › Mathematical Sciences