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researcher

A. Kuznetsov

7 papers hereh-index 365.4k citations253 works total

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

author position
  • middle author6
  • last author1

Across the 7 of 7 papers where every author was matched, so the position is known.

fields
  • cond-mat.mtrl-sci3
  • physics.app-ph2
  • cond-mat.mes-hall1
  • quant-ph1
same name
  • A. Kuznetsov — 29 papers, h 49
  • A. Kuznetsov — 23 papers, h 33
  • A. Kuznetsov — 20 papers, h 21
  • A. Kuznetsov — 15 papers, h 52
  • A. Kuznetsov — 8 papers, h 22
  • A. Kuznetsov — 7 papers, h 20

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

activity
20162020
most citedOptical properties of an ensemble of G-centers in silicon

85 citations · 109 across the 4 of their papers we have counts for

collaborators
Showing 2020Show all

4 papers · 1 filter

cond-mat.mes-hall2020★ 23 cited

Strain modulation of Si vacancy emission from SiC micro- and nanoparticles

G. C. Vásquez, M. E. Bathen, A. Galeckas +8

Single-photon emitting point defects in semiconductors have emerged as strong candidates for future quantum technology devices. In the present work, we exploit crystalline particle…

quant-ph2020

Broad diversity of near-infrared single-photon emitters in silicon

A. Durand, Y. Baron, W. Redjem +11

We report the detection of individual emitters in silicon belonging to seven different families of optically-active point defects. These fluorescent centers are created by carbon i…

cond-mat.mtrl-sci2020

High electron mobility single-crystalline ZnSnN2 on ZnO (0001) substrates

D. Gogova, V. S. Olsen, C. Bazioti +4

Making a systematic effort, we have developed a single-crystalline ZnSnN2 on ZnO (0001) by reactive magnetron co-sputtering. Epitaxial growth was achieved at 350 C by co-sputtering…

physics.app-ph2020

Single artificial atoms in silicon emitting at telecom wavelengths

W. Redjem, A. Durand, T. Herzig +15

Given its unrivaled potential of integration and scalability, silicon is likely to become a key platform for large-scale quantum technologies. Individual electron-encoded artificia…

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Not affiliated with arXiv. Researcher data from Semantic Scholar (ODC-BY) and OpenAlex.