AP
Abinash Panda
CMR Institute of Technology, Chulalongkorn University, National Institute Of Technology Silchar, Dhaneshwar Rath Institute of Engineering and Management Studies, Pune Institute of Computer Technology
About
My research interest includes optical fiber sensors, photonic crystal fibers, photonic sensors, bio-photonics, nanotechnology, optoelectronic devices, nanomaterial synthesis, material characterization.
Employment
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CMR Institute of Technology Associate Professor2024 - Present
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Chulalongkorn University PostDoctoral Researcher2023 - 2024
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Pune Institute of Computer Technology Assistant Professor2022 - 2023
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Slovak University of Technology in Bratislava Visiting Research Fellow2022 - 2022
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Gandhi Institute For Technological Advancement Assistant Professor2012 - 2019
Education
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National Institute Of Technology Silchar PhD Research Scholar2019 - 2022
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Dhaneshwar Rath Institute of Engineering and Management Studies Master in Technology2009 - 2011
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National Institute of Science and Technology Bachelor in Technology
Projects & Funding
Projects & funding information is unavailable.
Publications (72)
- Investigation of parity-time photonic crystal sensor based on topological edge-defect mode hybridization for oral cancer identification Save
- Precision Sensing at Selected Spectrum: A Double-Negative Low-Cost Metamaterial Sensor With Enhanced Directionality for Biomedical Applications Save
- Study of external and internal metal coating configurations in photonic crystal fiber plasmonic sensor for multi-cancer cells detection Save
- High-sensitivity nanometamaterial near-infrared biosensor for label-free early cancer detection via exosomal biomarkers Save
- Ultra-sensitive CO2 gas detection based on graphene-assisted defect resonance in a 1D photonic crystal Save
- Broad-angle mid-infrared polarization selectivity assisted by a polarization-sensitive photonic band gap in a one-dimensional photonic crystal comprising single-material hyperbolic metamaterials Save
- Polarization-Insensitive Nano-Metamaterial Sensor With Near-Infrared μ and ϵ Negative Properties for Early Cancer Detection via Exosome Analysis (70 THz to 3 PHz) Save
- Precision Multiband Terahertz Metamaterial Biosensor With Targeted Spectral Selectivity for Early Detection of MCF-7 Breast Cancer Cells Save
- Angle-Dispersion-Free Near-Infrared Transparent Bands in One-Dimensional Photonic Hypercrystals Save
- A 50THz Ultra-Wideband Nano-Photonics Perfect Absorber Biosensor for Label-Free Detection of Circulating Cancer Exosomes: Advancing Early Cancer Diagnostics Save