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Siming Chen

4 papers hereh-index 437 citations21 works total

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

author position
  • middle author3
  • last author1

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

fields
  • cond-mat.mes-hall1
  • cond-mat.mtrl-sci1
  • physics.app-ph1
  • physics.optics1
same name
  • Siming Chen — 7 papers, h 4
  • Siming Chen — 7 papers, h 3
  • Siming Chen — 5 papers, h 1
  • Siming Chen — 3 papers, h 3
  • Siming Chen — 3 papers, h 3
  • Siming Chen — 2 papers, h 4

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
20242026
collaborators

4 papers

physics.optics2026

Conjugate phase-noise cancellation enables submicrometre dual-comb ranging with free-running megahertz-linewidth lasers

Yue You, Zaifan Wu, Yi Zou +9

Frequency-domain dual-comb ranging combines rapid acquisition with interferometric sensitivity, but high-performance implementations often rely on mutually coherent or actively sta…

cond-mat.mtrl-sci2025

On-Demand Growth of Semiconductor Heterostructures Guided by Physics-Informed Machine Learning

Chao Shen, Yuan Li, Wenkang Zhan +15

Developing tailored semiconductor heterostructures on demand represents a critical capability for addressing the escalating performance demands in electronic and optoelectronic dev…

cond-mat.mes-hall2025

Highly reliable, ultra-wideband, isolator-free quantum-dot mode-locked frequency combs for optical interconnects beyond 3.2Tb/s

Shujie Pan, Victoria Cao, Yiheng Feng +6

Quantum dot mode-locked laser-based optical frequency combs are emerging as a critical solution for achieving low-cost, high-efficiency, and large-capacity optical interconnects. T…

physics.app-ph2024

Enhanced Radiation Hardness of InAs/GaAs Quantum Dot Lasers for Space Communication

Manyang Li, Jianan Duan, Zhiyong Jin +15

Semiconductor lasers have great potential for space laser communication. However, excessive radiation in space can cause laser failure. In principle, quantum dot (QD) lasers are mo…

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