Ashish Arora

About Ashish Arora

Ashish Arora, With an exceptional h-index of 22 and a recent h-index of 21 (since 2020), a distinguished researcher at Westfälische Wilhelms-Universität Münster, specializes in the field of Magnetooptics, semiconductor optics, 2D semiconductors, excitons, 0000-0001-7915-6523.

His recent articles reflect a diverse array of research interests and contributions to the field:

Giant Faraday rotation in atomically thin semiconductors

Engineering 2D Material Exciton Line Shape with Graphene/h-BN Encapsulation

High-performance broadband Faraday rotation spectroscopy of 2D materials and thin magnetic films

Disentangling Exciton Linewidth Broadening Factors in Transition Metal Dichalcogenide Monolayer with Electron Energy Loss Spectroscopy

Strain Relaxation and Excitonic Absorption of Atomically-Reconstructed WSe2 Moiré Superlattices

Substrate influence on transition metal dichalcogenide monolayer exciton absorption linewidth broadening

Understanding transition metal dichalcogenide absorption line widths in electron energy loss spectroscopy

Moiré Angle Dependent Excitonic Absorption in Twisted Bilayer WSe2 by EELS

Ashish Arora Information

University

Position

Postdoctoral Fellow Physikalisches Institut Germany (ResID AAN-2736-2020)

Citations(all)

3796

Citations(since 2020)

2733

Cited By

2292

hIndex(all)

22

hIndex(since 2020)

21

i10Index(all)

27

i10Index(since 2020)

25

Email

University Profile Page

Google Scholar

Ashish Arora Skills & Research Interests

Magnetooptics

semiconductor optics

2D semiconductors

excitons

0000-0001-7915-6523

Top articles of Ashish Arora

Giant Faraday rotation in atomically thin semiconductors

Nature Communications

2024/4/10

Engineering 2D Material Exciton Line Shape with Graphene/h-BN Encapsulation

Nano Letters

2024/3/12

High-performance broadband Faraday rotation spectroscopy of 2D materials and thin magnetic films

Small Methods

2022/10/13

Disentangling Exciton Linewidth Broadening Factors in Transition Metal Dichalcogenide Monolayer with Electron Energy Loss Spectroscopy

Microscopy and Microanalysis

2022/8

Strain Relaxation and Excitonic Absorption of Atomically-Reconstructed WSe2 Moiré Superlattices

Microscopy and Microanalysis

2022/8

Substrate influence on transition metal dichalcogenide monolayer exciton absorption linewidth broadening

Physical Review Materials

2022/7/22

Understanding transition metal dichalcogenide absorption line widths in electron energy loss spectroscopy

Microscopy and Microanalysis

2021/8

Moiré Angle Dependent Excitonic Absorption in Twisted Bilayer WSe2 by EELS

Microscopy and Microanalysis

2021/8

Correlative Luminescence and Absorption Spectroscopy from Monolayer WSe2 at the Nanoscale

Microscopy and Microanalysis

2021/8

Magneto-optics of layered two-dimensional semiconductors and heterostructures: Progress and prospects

Journal of Applied Physics

2021/3/28

Ashish Arora
Ashish Arora

H-Index: 17

Dark trions govern the temperature-dependent optical absorption and emission of doped atomically thin semiconductors

Physical Review B

2020/6/26

Strain tuning of the stokes shift in atomically thin semiconductors

Nanoscale

2020

See List of Professors in Ashish Arora University(Westfälische Wilhelms-Universität Münster)

Co-Authors

academic-engine