Manish K. Kashyap
Also known as: Manish Kumar
Kurukshetra University, Indian Institute of Technology Roorkee
About
Myself, Prof. Manish K. Kashyap, working as Professor of Physics at School of Physical Sciences, Jawaharlal Nehru University, New Delhi 110067, India.
Broad Area:
Materials Science, Theoretical Condensed Matter Physics, Plasma Physics and Accelerator Physics
Research Interests:
1. 2D materials/heterostructures for magnetism and photovoltaics
2. Hybrid Halide Perovskites for solar cells
3. Rare earth/Transition Metal based materials for permanent magnets
4. DMS and Heusler Alloys for Spintronics
5. Plasma instabilities in ECR ion sources
6. Interaction of heavy ion with plasma
7. Novel acceleration schemes of charged particles in accelerators
8. Thermoelectric Materials
9. Energy harvesting and Energy Storage
Employment
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Kurukshetra University Assistant & Associate Professor2007 - 2020
Education
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Indian Institute of Technology Roorkee Ph.D.2003 - 2009
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Kurukshetra University M.Sc.2001 - 2003
Projects & Funding
Projects & funding information is unavailable.
Publications (109)
- Numerical optimization of a Wien filter for beam conditioning in RFQ to DTL matching sections Save
- Computational Design and Performance Analysis of Lead‐Free Ca3AsI3 Perovskite–MoS2‐based Tandem Solar Cell Save
- Half Metallicity and Ferromagnetic Order in 2D‐Mn2O3/Si‐Doped Graphene Van der Waals Heterostructure Save
- Applicability of La-Doped BaSnO3 as an Efficient ETL for Perovskite Solar Cells Save
- Assessment of magnetic response in graphene/Cr2Ge2Te6 van der Waals heterostructure for spintronics Save
- Beam driven plasma instabilities in electron beam ion sources Save
- Interplay of Guanidinium Doping and Structural Dynamics in FA‐Cs Perovskite Thin Film Save
- Built‐In Electric Field at the Heterojunction of MnMoO4@1T‐MoS2 to Enhance the Electrochemical Storage Capacity in all Quasi‐Solid‐State Supercapacitors Save
- Investigation of the half-metallic properties of cubic perovskites RCoO3 (R=Pr and Nd): A DFT perspective Save
- Novel electrostatic accelerating modular tube without gap insulators: a Faraday cage solution for pelletron accelerators Save