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Yang Chen

6 papers hereh-index 219 citations10 works total

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

author position
  • middle author6

Across the 6 of 6 papers where every author was matched, so the position is known.

fields
  • cond-mat.mes-hall3
  • cond-mat.mtrl-sci3
same name
  • Yang Chen — 33 papers, h 21
  • Yang Chen — 32 papers, h 25
  • Yang Chen — 23 papers, h 39
  • Yang Chen — 14 papers, h 15
  • Yang Chen — 14 papers, h 2
  • Yang Chen — 13 papers, h 8

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

most citedUniversally optimizable strategy for magnetic gaps towards high-temperature quantum anomalous Hall states via magnetic-insulator/topological-insulator building-blocks

7 citations · 11 across the 5 of their papers we have counts for

collaborators
Showing cond-mat.mtrl-sciShow all

3 papers · 1 filter

cond-mat.mtrl-sci2025

Magnetic properties of molecular beam epitaxy-grown ultrathin Cr2Ge2Te6 films down to monolayer limit on Si substrates

Pengfei Ji, Ruixuan Liu, Tianchen Zhu +13

Cr2Ge2Te6, a prototypical van der Waals ferromagnetic semiconductor, have attracted significant interest for its potential applications in high-performance spintronics. However, th…

cond-mat.mtrl-sci2024★ 7 cited

Universally optimizable strategy for magnetic gaps towards high-temperature quantum anomalous Hall states via magnetic-insulator/topological-insulator building-blocks

Zhe Li, Feng Xue, Xin-Yi Tang +4

Optimizing the magnetic Zeeman-splitting term, specifically the magnetic gap of the topological surface states (TSSs), is a crucial issue and central challenge in advancing higher-…

cond-mat.mtrl-sci2024

Chern insulator phase realized in dual-gate-tuned MnBi2Te4 thin films grown by molecular beam epitaxy

Yunhe Bai, Yuanzhao Li, Ruixuan Liu +19

The intrinsic magnetic order, large topological-magnetic gap and rich topological phases make MnBi2Te4 a wonderful platform to study exotic topological quantum states such as axion…

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