Jinal
University of Glasgow, ASTAR research Entities, Indian Institute of Technology Hyderabad
About
Dr Jinal Tapar is currently working as a research associate at the James Watt school of Engineering, University of Glasgow in the United Kingdom. Previously, she worked as a Scientist at A*STAR in Singapore. She received her PhD from the department of Electrical Engineering, IIT Hyderabad in December 2021. Her research interests span simulation, modelling, and fabrication of semiconductor nanophotonic devices, non-Hermitian systems, and reconfigurable metasurfaces as a part of miniaturized spatial light modulators for next-gen applications like LiDAR, AR/VR, and 3D holographic displays, and Mid-IR devices for defence and healthcare applications. She has 7 publications in high impact factor journals and more than 13 conference presentations.
Employment
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University of Glasgow Research associate2024 - Present
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ASTAR research Entities Scientist2022 - 2023
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Indian Institute of Technology Hyderabad Institute PostDoc2021 - 2022
Education
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Indian Institute of Technology Hyderabad PhD2017 - 2021
Projects & Funding
Projects & funding information is unavailable.
Publications (17)
- Paper-based short-wave infrared spectroscopy for glucose quantification with human serum Save
- Electrically driven MIM tunnel junctions for polarized light generation Save
- Anti-crossing of modes and singularity points in dielectric metasurface-on-mirror microcavities Save
- Generalized Kerker effect in PT-symmetric nanoantenna array Save
- Modelling of tunable and room temperature operable mid-infrared photodetectors using Graphene Nanoribbons Save
- Tunable Directional Emission from Electrically-driven Nanostrip Tunnel Junctions Save
- Wavelength Selective Beam Switching Using Electrically Driven Nano-Strip MIM Tunnel Junctions Save
- Dynamically tunable asymmetric transmission in PT-symmetric metasurfaces Save
- Graphene Nanoribbons based mid-infrared photodetectors Save
- Dynamically Tunable Asymmetric Transmission in PT-Symmetric Phase Gradient Metasurface Save