人物經(jīng)歷
2002.09-2006.07 學(xué)士(電子科學(xué)與技術(shù)),天津大學(xué)
2006.09-2011.01 博士(物理電子學(xué)),中國科學(xué)院半導(dǎo)體研究所
2011.02-2012.12 博士后,德國萊布尼茨固態(tài)和材料研究所 (IFW Dresden,合作導(dǎo)師Prof. Armando Rastelli, Prof. Oliver G Schmidt)
2013.01-2015.03 聘期制科學(xué)家,分子束外延實驗室負責(zé)人,IFW Dresden
2015.04-2016.06 高級研究員,奧地利林茨大學(xué)半導(dǎo)體和固體物理研究所
2016.07-至今 ?中國科學(xué)技術(shù)大學(xué) 特任教授
發(fā)表論文
7. D Huber, M Reindl, YH Huo, et al. (2018) Highly indistinguishable and strongly entangled photons from symmetric GaAs quantum dots, Nat. Commun 8, 15506.
6. H. Huang, R Trotta, YH Huo*, et al (2017) Electrically-pumped wavelength-tunable GaAs quantum dots interfaced with rubidium atoms. ACS Photonics 4, 868-872.
5. YH Huo*, V Křápek, OG Schmidt, A Rastelli (2017) Spontaneous brightening of dark excitons in GaAs/AlGaAs quantum dots near a cleaved facet. Phy. Rev. B 95, 165304.
4. YH Huo*, BJ Witek, S Kumar, et al. (2014) A light-hole exciton in a quantum dot. Nature Physics 10, 46-51.
3. J Zhang, YH Huo*, A Rastelli, et al. (2014) Single Photons On-Demand from Light-Hole Excitons in Strain-Engineered Quantum Dots. Nano Letters 15, 422-427.
2. YH Huo*, V Křápek, A Rastelli, OG Schmidt (2014) Volume dependence of excitonic fine structure splitting in geometrically similar quantum dots. Phys. Rev. B 90, 041304.
1. YH Huo*, A Rastelli, OG Schmidt (2013) Ultra-small excitonic fine structure splitting in highly symmetric quantum dotson GaAs (001) substrate. Appl. Phys. Lett. 102, 152105.
研究方向
1、量子信息,固態(tài)量子材料與器件
2、單光子源、糾纏光子源、超導(dǎo)量子計算機芯片材料
3、分子束外延,材料與器件物理