Yongheng Huo

researcher ORCID ID = 0000-0002-0310-3078

Yongheng Huo is …
instance of (P31):
humanQ5

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P6178Dimensions author ID01011201664.38
P496ORCID iD0000-0002-0310-3078
P1053ResearcherIDC-1916-2016
P1153Scopus author ID55924537500

P69educated atChinese Academy of SciencesQ530471
Tianjin UniversityQ2031560
P108employerUniversity of Science and Technology of ChinaQ1074103
Johannes Kepler University LinzQ682739
Leibniz Institute for Solid State and Materials ResearchQ835883
P106occupationresearcherQ1650915

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author (P50)
Q44719033A nanomembrane-based wavelength-tunable high-speed single-photon-emitting diode
Q62575863A quantum plasmonic nanocircuit on a semiconductor platform
Q59450232An artificial Rb atom in a semiconductor with lifetime-limited linewidth
Q41506799Corrigendum: High yield and ultrafast sources of electrically triggered entangled-photon pairs based on strain-tunable quantum dots
Q38681953Electrically-Pumped Wavelength-Tunable GaAs Quantum Dots Interfaced with Rubidium Atoms
Q62339225Fano effect due to ponderomotive coupling in intersubband response of semiconductor quantum wells
Q120965616Generation of genuine entanglement up to 51 superconducting qubits
Q36392369High yield and ultrafast sources of electrically triggered entangled-photon pairs based on strain-tunable quantum dots
Q33762976Highly indistinguishable and strongly entangled photons from symmetric GaAs quantum dots
Q59450235Narrow-line self-assembled GaAs quantum dots for plasmonics
Q38673727On-Chip Single-Plasmon Nanocircuit Driven by a Self-Assembled Quantum Dot.
Q59450215On-demand semiconductor source of 780-nm single photons with controlled temporal wave packets
Q35542139Plasmonic superlensing in doped GaAs
Q62048827Publisher's Note: An artificial Rb atom in a semiconductor with lifetime-limited linewidth [Phys. Rev. B92, 245439 (2015)]
Q125858679Realization of fractional quantum Hall state with interacting photons
Q59450236Single Photons On-Demand from Light-Hole Excitons in Strain-Engineered Quantum Dots
Q62512962Ultrafast electrically-triggered sources of single photons and entangled-photon pairs based on strain-tunable quantum dots LEDs
Q58802448Uniaxial stress flips the natural quantization axis of a quantum dot for integrated quantum photonics

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