Photonics and Optical Communication research

The Photonics and Optical Communications domain focus on the development of light based technologies for communication, sensing, and advanced device applications. This interdisciplinary field integrates optics, electronics, materials science, and computational techniques to design high speed optical communication systems, intelligent sensors, and innovative photonic devices for healthcare, industry, and smart technologies. The Photonics and Optical Communications Research Group conducts research in optical sensing, fiber optic communications, photonic devices, machine learning assisted optical system optimization, and smart photonic textiles, aiming to develop advanced and practical solutions for next generation optical technologies.

INTEREST(S)

-

VISION

To become a leading research group in photonics and optical technologies, recognized internationally for impactful research, innovation, and contributions to advanced optical communication systems, fiber-optic technologies, and smart sensing applications.

MISSION

To advance research and innovation in photonics, optical communications, and optical sensing technologies through high quality scientific research, interdisciplinary collaboration, and the development of practical solutions for next generation communication, healthcare, and sensing applications. The group is committed to fostering academic excellence, mentoring future researchers, and contributing to global technological advancement.

Photonic Fiber Based Advanced Smart Textiles

This research focuses on incorporating photonic fibers into textile materials to develop smart and functional wearable technologies. The work aims to create flexible, lightweight, and responsive text...

Machine Learning Assisted Optimization of Optical Sensor Performance

This research explores the integration of machine learning algorithms with optical sensing technologies to improve sensor accuracy, sensitivity, and predictive performance. The work supports the deve...

Numerical Modeling and Optimization of Fiber Optic Communication Systems

This research investigates the design and performance optimization of fiber optic communication systems using advanced numerical modeling techniques. The goal is to enhance transmission efficiency, si...

Surface Plasmon Resonance (SPR) Integrated Fiber Optic Biosensors for Biomedical and Chemical Sensing Applications

This research focuses on the development of highly sensitive SPR-based fiber optic biosensors for detecting biological and chemical substances. The work aims to improve sensing accuracy, real-time m...