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プロフィール詳細
Dr. Ashish K.に依頼
India
PhD in Physics | Theoretical Physicist | DFT | Condensed Matter | Materials Research | Simulations
プロフィール概要
専門分野
サービス
Writing
Technical Writing,
Creative Writing,
Audio Transcription,
Translation
職務経験
Postdoctoral researcher
National Center for Theoretical Sciences
11月 2022 - 現在 ![]()
Postdoctoral Researcher
NCTS Taiwan
11月 2022 - 10月 2024
学歴
Ph.D. (Physics)
Vnit Nagpur
7月 2016 - 9月 2022
Ph.D. (Physics)
Visvesvaraya National Institute of Technology
7月 2016 - 9月 2022 ![]()
認定資格
出版物
JOURNAL ARTICLE
Ashish Kore, Aaditya Shende, Shivendra Kumar Gupta, Poorva Singh(2023). Pressure driven Weyl-topological insulator phase transition in Weyl semimetal SrSi2 . Condensed Matter Physics. 26. (2). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 23707. Institute for Condensed Matter Physics
Himanshu Murari, Poorva Singh, Ashish Kore(2021). Enhancement of thermoelectric performance of CH3NH3PbI3 through strain driven topological phase transition and doping . Journal of Physics D: Applied Physics. 54. (30). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 305503. {IOP} Publishing
Kore, A., Murari, H., Singh, P.(2021). Enhancement of thermoelectric performance of CH<inf>3</inf>NH<inf>3</inf>PbI<inf>3</inf>through strain driven topological phase transition and doping . Journal of Physics D: Applied Physics. 54. (30).
Kore, A., Shende, A., Nautiyal, T., Singh, P.(2021). Substrate orientation dependent structural, electronic and magnetic properties of V and Cr linear chains . Physica B: Condensed Matter. 617.
Kore, A., Kashikar, R., Gupta, M., Singh, P., Nanda, B.R.K.(2020). Pressure and inversion symmetry breaking field-driven first-order phase transition and formation of Dirac circle in perovskites . Physical Review B. 102. (3).
Kashikar, Ravi, Gupta, Mayank, Singh, Poorva, Nanda, B. R. K., Kore, Ashish (2020). Pressure and inversion symmetry breaking field-driven first-order phase transition and formation of Dirac circle in perovskites .
CONFERENCE PAPER
Kore, A., Singh, P.(2018). First principle study of heterostructure of BaBi<inf>3</inf>-stanene for topological superconductor applications . AIP Conference Proceedings. 1953.