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Jiawei Yang

4 papers hereh-index 7262 citations21 works total

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

author position
  • first author2
  • middle author2

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

fields
  • physics.optics3
  • quant-ph1
same name
  • Jiawei Yang — 17 papers
  • Jiawei Yang — 6 papers, h 8
  • Jiawei Yang — 6 papers
  • Jiawei Yang — 6 papers, h 4
  • Jiawei Yang — 5 papers, h 5
  • Jiawei Yang — 4 papers, h 6

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
20232026
collaborators

4 papers

physics.optics2026

High-performance Sources of Multidimensionally Engineered Quantum Light Based on Monolithic Microcavity-metalens Interfaces

Jiantao Ma, Dong Liu, Shunfa Liu +15

The ultimate non-classic light sources for modern photonic quantum technology require on-demand generation of indistinguishable quantum light with high brightness and flexible engi…

physics.optics2025

In-situ three-dimensional strain engineering of solid-state quantum emitters in photonic structures towards scalable quantum networks

Yan Chen, Xueshi Li, Shunfa Liu +11

Solid-state quantum emitters are pivotal for modern photonic quantum technology, yet their inherent spectral inhomogeneity imposes a critical challenge in pursuing scalable quantum…

quant-ph2024

Filter-free high-performance single photon emission from a quantum dot in a Fabry-Perot microcavity

Zhixuan Rao, Jiawei Yang, Changkun Song +6

Combining resonant excitation with Purcell-enhanced single quantum dots (QDs) stands out as a prominent strategy for realizing high performance solid-state single photon sources. H…

physics.optics2023

Tunable quantum dots in monolithic Fabry-Perot microcavities for high-performance single-photon sources

Jiawei Yang, Yan Chen, Zixuan Rao +9

Cavity-enhanced single quantum dots (QDs) are the main approach towards ultra-high-performance solid-state quantum light sources for scalable photonic quantum technologies. Neverth…

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