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湖南师范大学物理与电子科学学院导师教师师资介绍简介-黄金凤副教授

本站小编 Free考研考试/2021-08-21



个人简介
黄金凤,博士,副教授,理论物理、光学工程硕士生导师。入选首批“世承人才计划”,湖南省青年骨干教师培养对象。香港中文大学博士后,合作导师:Prof. Chi Kwang Law。中国科学院理论物理研究所博士毕业,导师:孙昌璞院士。湖南师范大学-中国科学院理论物理研究所联合培养硕士,导师:匡乐满教授,孙昌璞院士。近年来,主要致力于量子物理,量子信息,量子光学等方向国际前沿课题研究。目前主要研究兴趣为:超强耦合光与物质的量子相干效应,量子信息处理的实现等。曾访问日本理化学研究所(RIKEN,Japan),美国加州大学默塞得分校(University of California, Merced, USA). 已在《Light: Science & Applications》(Nature旗下子刊,SCI 1区),《Physical Review A》(SCI 2区)、《Optics Express》(SCI 2区)和《Ann. Phys. (Berlin)》(SCI 2区)等国际权威物理学期刊上发表被SCI 1区和SCI 2区收录的科研论文20余篇。主持国家自然科学基金项目3项,省自然科学基金项目1项,省教育厅重点项目1项。
办公室:量子楼407
Email: jfhuang@hunnu.edu.cn



学术贡献
1. 量子物理与量子信息
2. 量子光学



教学情况
本科生:《物理光学》,《普物实验》;
曾教课程:《大学物理》,《普通物理》,《复变函数与积分变换》。



承担课题
1. 国家自然科学基金面上项目:光与物质超强耦合系统中的量子效应及量子调控(批准号:**,2021-01-01至 2024-12-31),主持;
2. 国家自然科学基金青年科学基金项目: 超强耦合下受限量子系统的量子相干效应及其量子调控(批准号:** ,2016-01-01 至 2018 -12-31 ),主持;
3. 国家自然科学基金理论物理专款:非旋转波相互作用的量子效应及其应用(批准号:** , 2015-01-01至2015-12-31),主持;
4. 湖南省教育厅重点项目,频率调制下超强耦合系统少光子调控研究(批准号:18A007, 2018-09-01至2021-08-31),主持;
5. 湖南省自然科学基金青年项目:光与物质深强耦合系统中多模光场的量子效应及其应用研究(批准号:2020JJ5345,2020年1月1日 至 2022年12月31日),主持;
6. 国家自然科学基金面上项目,腔光力系统中的量子效应及其量子调控(批准号:**,2018-01-01至2021-12-31),参与。



代表性论文
[1] J.-F. Huang *, J.-Q. Liao*, and L.-M. Kuang,Ultrastrong Jaynes-Cummings Model,Phys. Rev. A 101, 043835 (2020).
[2] D.-G. Lai, J.-F. Huang, X.-L. Yin, B.-P. Hou, W. Li, D. Vitali, F. Nori, and J.-Q. Liao*,Nonreciprocal ground-state cooling of multiple mechanical resonators,Phys. Rev. A 102, 011502(R) (2020).
[3] J.-Y. Zhou, Y.-H. Zhou, X.-L. Yin, J.-F. Huang*, and J.-Q. Liao?,Quantum entanglement maintained by virtual excitations in an ultrastrongly-coupled-oscillator system,Sci. Rep. 10, 12557 (2020).
[4] L.-B. Fan, Y.-H. Zhou, F. Zou, H. Guo, J.-F. Huang*, and J.-Q. Liao?,Quantum thermalization and vanishing thermal entanglement in the open Jaynes-Cummings model,Ann. Phys. (Berlin), 532, ** (2020).
[5] F. Zou, X.-Y. Zhang, X.-W. Xu, J.-F. Huang*, and J.-Q. Liao?,Multiphoton blockade in the two-photon Jaynes-Cummings model,Phys. Rev. A 102, 053710 (2020).
[6] J. Huang, Y.-H. Liu, J.-F. Huang*, and J.-Q. Liao?,Generation of macroscopic entangled cat states in a molecular cavity-QED system,Phys. Rev. A 101, 043841 (2020).
[7] Y.-H. Zhou, Q.-S. Tan, X.-M. Fang, J.-F. Huang*, J.-Q. Liao*,Spectrometric detection of weak forces in cavity optomechanics,Opt. Express 28(19), 28620 (2020).
[8] J.-Q. Liao*, J.-F. Huang, L. Tian, L.-M. Kuang, and C.-P. Sun,Generalized ultrastrong optomechanical-like coupling,Phys. Rev. A 101, 063802 (2020).
[9] Y.-H. Zhou, F. Zou, X.-M. Fang., J.-F. Huang. * and J.-Q. Liao.*,Spectral characterization of couplings in a mixed optomechanical model, Commun. Theor. Phys. 71, 939 (2019).
[10] F. Zou, L.-B. Fan, J.-F. Huang *, J.-Q. Liao*,Enhancement of few-photon optomechanical effects with cross-Kerr nonlinearity,Phys. Rev. A 99, 043837(2019).
[11] J.-F. Huang *, J.-Q. Liao*, L. Tian, and L.-M. Kuang,Manipulating counter-rotating interactions in the quantum Rabi model via modulation of the transition frequency of the two-level system,Phys. Rev. A, 96, 043849 ( 2017).
[12] J.-Q. Liao*, J.-F. Huang, L. Tian*,Generation of macroscopic Schr?dinger-cat states in qubit-oscillator systems,Phys. Rev. A, 93, 033853 (2016).
[13] T. Y. Li, J. F. Huang, and C. K. Law,Scattering of two distinguishable photons by a Ξ-type three-level atom in a one-dimensional waveguide,Phys. Rev. A, 91, 043834 (2015).
[14] J.-F. Huang and C. K. Law,Phase-kicked control of counter-rotating interactions in the quantum Rabi model,Phys. Rev. A, 91, 023806 ( 2015).
[15] J.-F. Huang and C. K. Law,Photon emission via vacuum-dressed intermediate states under ultrastrong coupling,Phys. Rev. A, 89, 033827 (2014).
[16] W.-B. Yan, J.-F. Huang, and H. Fan*,Tunable single-photon frequency conversion in a Sagnac interferometer,Scientific Reports, 3, 3555 (2013).
[17] J.-F. Huang, T. Shi, C. P. Sun, and F. Nori,Controlling single-photon transport in waveguides with finite cross section,Phys. Rev. A, 88, 013836 (2013).
[18] J.-F. Huang, J.-Q. Liao, and C. P. Sun*,Photon blockade induced by atoms with Rydberg coupling,Phys. Rev. A, 87, 023822 (2013).
[19] J.-F. Huang, Q. Ai, Y. Deng, C. P. Sun, and F. Nori,Quantum statistics of the collective excitations of an atomic ensemble inside a cavity,Phys. Rev. A, 85, 023801 (2012).
[20] H. Dong, D.-Z. Xu, J.-F. Huang, and C.-P. Sun*,Coherent excitation transfer via the dark-state channel in a bionic system, Light: Science & Applications, 1, e2 (2012).
[21] J.-Q. Liao, J.-F. Huang, and L.-M. Kuang,Quantum thermalization of two coupled two-level systems in eigenstate and bare-state representations,Phys. Rev. A, 83, 052110 (2011).
[22] J.-Q. Liao, J.-F. Huang, L.-M. Kuang, and C. P. Sun,Coherent excitation-energy transfer and quantum entanglement in a dimer,Phys. Rev. A, 82, 052109 (2010).
[23] J.-Q. Liao, J.-F. Huang, Y.-x. Liu, L.-M. Kuang, and C. P. Sun,Quantum switch for single-photon transport in a coupled superconducting transmission-line-resonator array,Phys. Rev. A, 80, 014301 (2009).
[24] J.-F. Huang, Y. Li, J.-Q. Liao, L.-M. Kuang*, and C. P. Sun*,Dynamic sensitivity of photon-dressed atomic ensemble with quantum criticality,Phys. Rev. A, 80, 063829 (2009).



获奖情况
1. 2020,湖南师范大学青年教师课堂教学竞赛“三等奖”;
2. 2013,中国科学院“三好学生标兵”;
3. 湖南省优秀硕士学位论文。





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