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S. Acharya

4 papers hereh-index 6105 citations30 works total

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • middle author4

Across the 4 of 4 papers where every author was matched, so the position is known.

fields
  • physics.app-ph3
  • physics.ins-det1
same name
  • S. Acharya — 39 papers, h 43
  • S. Acharya — 15 papers, h 16
  • S. Acharya — 6 papers, h 9
  • S. Acharya — 6 papers, h 15
  • S. Acharya — 2 papers, h 1
  • S. Acharya — 2 papers, h 2

Either other researchers who publish under this name, or the same person where the external sources have not merged their records.

identity via Semantic Scholar / OpenAlex

collaborators

4 papers

physics.app-ph2026

Study of GeSn Selective Area Growth with Demonstration of SWIR Light Detection

Hryhorii Stanchu, Quang Minh Thai, Rajesh Kumar +16

As germanium-tin (GeSn) epitaxial growth quality continuously improves, the search for an efficient integration strategy of GeSn optoelectronics devices into complementary metal-ox…

physics.ins-det2026

Systematic study of high performance GeSn photodiodes with thick absorber for SWIR and extended SWIR detection

Quang Minh Thai, Rajesh Kumar, Abdulla Said Ali +13

Germanium-tin (GeSn) photodiodes potentiate a viable solution to integrate SWIR and extended SWIR detection technology into CMOS processing line. However, challenges in the growth…

physics.app-ph2025

Study of electronic band alignment in SiGeSn/GeSn quantum well via internal photoemission effect

Justin Rudie, Huong Tran, Yang Zhang +10

SiGeSn-based optoelectronic devices, which operate across a broad infrared wavelength range, have attracted significant attention, particularly heterostructures utilizing quantum w…

physics.app-ph2025

Direct Bandgap Photoluminescence of GeSn grown on Si(100) substrate by Molecular Beam Epitaxy Growth

Diandian Zhang, Nirosh M. Eldose, Dinesh Baral +9

Group IV alloys of GeSn have gained significant attention for electronic and optoelectronic applications on a Si platform due to their compatibility with existing CMOS technology,…

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