Nipun Vashistha

Research Scholar in Electro-optical and Photonics Engineering with publications and sufficient background in the field

Research Expertise

Instrumentation
Clinical Biochemistry
Biotechnology
Analytical Chemistry
Biomedical Engineering
Electronic, Optical and Magnetic Materials
Electrical and Electronic Engineering
Surfaces, Coatings and Films
Metals and Alloys
Materials Chemistry
Condensed Matter Physics

About

Ambitious and highly motivated Electro-optical engineering graduate with proven leadership capabilities, excellent communication skills and a team player who likes to take initiative and seek out new challenges. Experienced in Electro-optical and Photonic systems. Specialized in semiconductor opto-electronic devices, electro-optical systems, optical signal processing, programming and simulation, semiconductor fabrication methods, thin film deposition techniques and characterization tools. Past research experience in Surface Plasmon Resonance based optical sensing devices and spectroscopic techniques. Currently working on meta-material based novel light trapping structures to enhance the optical absorption for thin-film photovoltaic devices.

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Education

Universitat Ben Gurion Banegev

PhD, Electrical Engineering / October, 2027 (anticipated)

Beersheba

Universitat Ben Gurion Banegev

MSc (Research), Electro-optical and Photonics Engineering / June, 2023

Beersheba

University of Delhi

BSc, Physical Science / October, 2020

New Delhi

Experience

Ben Gurion University of the Negev

Graduate Research Scholar / February, 2021June, 2023

Two years of research experience working as a full-time master’s research student in the unit of Electro-optics and Photonics engineering, Ben Gurion University of the Negev, Israel.

Research Scholar / October, 2023Present

My current research involves designing and optimization of novel light trapping structures based on photonic crystal metamaterials. The optical performance of these structures is analyzed using FDTD method. The photovoltaic performance is simulated using Synopsys TCAD Sentaurus package. Also, I employ Scanning Near-Field Optical Microscopy (SNOM) to study the underlying light trapping of the designed structures.

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