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廖潔橋 特聘教授

作者:時間:2022-12-26 19:18瀏覽次數:

個人簡介

廖潔橋,男,1981年9月出生,博士,“瀟湘學者”特聘教授,博士生導師,湖南省科技創新領軍人才,國家自然科學“優秀青年基金”和湖南省自然科學“傑出青年基金”獲得者,湖南省“百人計劃”青年項目和湖南省長株潭高層次人才聚集工程“優秀青年人才”項目入選者。2003年與2008年先後於湖南師範大學獲得學士和博士學位;2008年至2016年先後在中國科2理論物理研究所、香港中文大學、日本理化學研究所和美國加州大學默塞德分校從事研究工作。主要從事量子物理、量子光學和量子信息領域的理論研究。迄今已在Phys. Rev. Lett.、Laser Photonics Rev.、New J. Phys.、Phys. Rev. A和Opt. Express等刊物上發表SCI論文68篇,論文被引用2950餘次,單篇最高被引241次,8篇第一作者論文被引超過100次,2篇論文入選ESI高被引論文,H因子為28。主持承擔了國家自然科學基金優秀青年項目、面上項目、湖南省科技創新領軍人才項目和湖南省自然科學基金傑出青年項目等科研項目10項。入選2021全球前2%頂尖科學家榜單。擔任0副院長、兼任物質微結構與功能湖南省重點實驗室副主任、中國物理學會量子光學專業委員會委員、第六屆中國青年科技工作者協會理事、湖南省青年科技工作者協會理事(基礎科學專業委員會主任委員)、湖南省光學學會常務理事、湖南省量子科技學會常務理事兼副秘書長、湖南省物理學會理事、湖南師範大學科協委員等。

辦公室:量子樓407

Email: jqliao@hunnu.edu.cn

*本團隊常年招收青年教師、博士後、博士生和碩士生。待遇豐厚、發展機會多。要求:身心健康、有志於物理學前沿研究、勤奮、踏實。

學術貢獻

1. 提出了打破力學暗模效應的物理機制,實現多個力學振子的協同基態冷卻與光力糾纏;

2. 獲得了光力系統中單光子和兩光子輻射和散射的精確解,發現了聲子邊帶對光子阻塞的調製規律;

3. 發現了單光子光力耦合的物理放大機制,可實現單光子水平的光力效應觀測;

4. 提出了Floquet邊帶加強共振平移過程的物理機制,可製備宏觀可區分的薛定諤貓態;

5. 發展了求解洛倫茲波包散射的拉普拉斯變換方法,獲得了系統瞬時量子態的精確解析解。

教學情況

本科生教學:《量子力學》《量子力學(二)》《複變函數與積分變換》

研究生教學:《高等量子力學》《量子統計物理學》《量子光學專題》《量子物理前沿》《現代量子理論》

承擔課題

在研科研課題:

1. 湖南省科技創新領軍人才,2021RC4029,2021/09-2024/09,在研,主持

2. 國家自然科學基金面上項目,12175061,多力學模腔光力體系中的新奇量子效應與應用,2022/01-2025/12,在研,主持

3. 國家自然科學基金理論物理重點專項,12247105,基於兩類固態人工量子體系的非經典性與量子傳感新機理理論研究,2023/01-2026/12,在研,子課題負責人

4. 國家自然科學基金重點項目,11935006,腔光力雜化量子系統中的新奇效應與應用,2020/01-2024/12,在研,子課題負責人

5. 湖南省“科技創新平臺與人才計劃” 優秀人才獎勵,2017XK2018,2018/01-2022/12,在研,主持

6. 湖南省科技創新團隊項目,2020RC4047,量子光力雜化系統的新奇效應與應用,2021/01-2023/12,在研,參與

7. 湖南師範大學“瀟湘學者” 特聘教授啟動經費,雜化腔光力系統的量子效應及其應用研究,2016/07 -今,在研,主持

已結題科研課題:

1. 國家自然科學優秀青年基金項目,11822501,量子物理及其應用,2019/01-2021/12,已結題,主持

2. 國家自然科學基金面上項目,11774087,腔光力系統中的量子效應及其量子調控,2018/01-2021/12,已結題,主持

3. 湖南省“百人計劃”青年項目,2016年,物理學科,已結題,主持

4. 湖南省自然科學基金傑出青年基金,2017JJ1021,腔光力系統的量子效應及其應用,2017/01-2019/12,已結題,主持

承擔教學課題:

1. 2021年度湖南省線下一流課程《量子力學》,主持

2. 2020年度湖南省學位與研究生教育改革研究項目:《量子物理前沿》課程教學改革的實踐與探索,2020JGYB087,主持

3. 2020年度湖南師範大學線下一流本科課程《量子力學》,主持

4. 2019年度湖南師範大學優秀教學組織“量子物理教學團隊”,主持,團隊負責人

5. 2019年湖南省學位與研究生教育改革研究項目:“思政元素”融入研究生專業課程的教學探索與實踐”,2019JGYB099,參與

已結題教學課題:

1. 2019年度湖南師範大學“課程思政”建設課程《量子力學》,主持

2. 2020年度湖南師範大學教學教改研究項目:“面向拔尖學生培養計劃2.0的《量子力學》課程教學改革研究”,主持

代表性論文

56. Wang-Yan Liu, Li-Bao Fan, Ye-Xiong Zeng, Jin-Feng Huang*,Jie-Qiao Liao*, Quantum Thermalization and Thermal Entanglement in the Open Quantum Rabi Model, Ann. Phys. (Berlin)202200502 (2022).

55. Jian Huang, Deng-Gao Lai*, andJie-Qiao Liao*, Thermal-noise-resistant optomechanical entanglement via general dark-mode control,Phys. Rev. A106, 063506 (2022).

54. Xian-Li Yin, Wen-Bin Luo, andJie-Qiao Liao*, Non-Markovian disentanglement dynamics in double-giant-atom waveguide-QED systems,Phys. Rev. A 106, 063703 (2022).

53. Deng-Gao Lai,Jie-Qiao Liao*, Adam Miranowicz, and Franco Nori, Noise-Tolerant

Optomechanical Entanglement via Synthetic Magnetism,Phys. Rev. Lett.129, 063602 (2022).

52. Ran Huang, Ş. K. Özdemir*,Jie-Qiao Liao, Fabrizio Minganti, Le-Man Kuang, Franco Nori*, and Hui Jing*, Exceptional Photon Blockade: Engineering Photon Blockade with Chiral Exceptional Points,Laser Photonics Rev. 2022, 2100430.

51. Jian Huang, Deng-Gao Lai, Cheng Liu, Jin-Feng Huang, Franco Nori, and Jie-Qiao Liao*, Multimode optomechanical cooling via general dark-mode control,Phys. Rev. A 106, 013526 (2022).

50. Xian-Li Yin, Yu-Hong Liu, Jin-Feng Huang*, and Jie-Qiao Liao*, Single-photon scattering in a giant-molecule waveguide-QED system,Phys. Rev. A 106, 013715 (2022).

49. Fen Zou,Jie-Qiao Liao*, and Yong Li*, Dynamical emission of phonon pairs in optomechanical systems,Phys. Rev. A 105, 053507 (2022).

48. Yu-Hong Liu, Xian-Li Yin, Jin-Feng Huang*, andJie-Qiao Liao*, Accelerated ground-state cooling of an optomechanical resonator via shortcuts to adiabaticity,Phys. Rev. A 105, 023504 (2022).

47. Ya-Ting Guo#, Fen Zou#, Jin-Feng Huang*, andJie-Qiao Liao*,Retrieval of photon blockade effect in the dispersive Jaynes-Cummings model,Phys. Rev. A 105, 013705 (2022).

46. Xian-Li Yin, Yue-Hui Zhou, andJie-Qiao Liao*,All-optical quantum simulation of ultrastrong optomechanics,Phys. Rev. A105, 013504 (2022).

45. Jin Liu, Yue-Hui Zhou, Jian Huang, Jin-Feng Huang, andJie-Qiao Liao*,Quantum simulation of a three-mode optomechanical system based on the Fredkin-type interaction,Phys. Rev. A 104, 053715 (2021).

44. Hong Deng#, Fen Zou#, Jin-Feng Huang, andJie-Qiao Liao*,Optical normal-mode-induced phonon-sideband splitting in the photon-blockade effect,Phys. Rev. A 104, 033706 (2021).

43. Chen Wang, Hua Chen*, andJie-Qiao Liao*,Nonequilibrium thermal transport and photon squeezing in a quadratic qubit-resonator system,Phys. Rev. A 104, 033701 (2021).

42. Deng-Gao Lai, Jian Huang, Bang-Pin Hou, Franco Nori, andJie-Qiao Liao*,Domino cooling of a coupled mechanical-resonator chain via cold-damping feedback,Phys. Rev. A 103, 063509 (2021).

41. Qing-Shou Tan, Mao Zhang, Yu Chen,Jie-Qiao Liao, and Jing Liu*,Generation and storage of spin squeezing via learning-assisted optimal control, Phys. Rev. A 103, 032601 (2021).

40. Yue-Hui Zhou, Xian-Li Yin,andJie-Qiao Liao*, Quantum Simulation of Tunable and Ultrastrong Mixed-Optomechanics,Opt. Express 29(18), 28202 (2021).

39. Fen Zou, Xiao-Ya Zhang, Xun-Wei Xu, Jin-Feng Huang*,andJie-Qiao Liao*, Multiphoton blockade in the two-photon Jaynes-Cummings model,Phys. Rev. A102, 053710 (2020).

38. Yue-Hui Zhou, Qing-Shou Tan, Xi-Ming Fang, Jin-Feng Huang*,Jie-Qiao Liao*, Spectrometric detection of weak forces in cavity optomechanics,Opt. Express28(19), 28620 (2020).

37. Qing-Shou Tan*, Ji-Bing Yuan*,Jie-Qiao Liao*, Le-Man Kuang*, Supersensitive estimation of the coupling rate in cavity optomechanics with an impurity-doped Bose-Einstein condensate,Opt. Express 28(15), 22867 (2020).

36. Deng-Gao Lai, Jin-Feng Huang, Xian-Li Yin, Bang-Pin Hou, Wenlin Li, David Vitali, Franco Nori, andJie-Qiao Liao*, Nonreciprocal Ground-State Cooling of Multiple Mechanical Resonators, Phys. Rev. A (Rapid Communication) 102, 011502 (2020).

35. Deng-Gao Lai, Xin Wang, Wei Qin, Bang-Pin Hou*, Franco Nori, andJie-Qiao Liao*, Tunable optomechanically-induced transparency by controlling the dark-mode effect,Phys. Rev. A102, 023707 (2020).

34. Li-Bao Fan, Yue-Hui Zhou, Fen Zou, Huan Guo, Jin-Feng Huang*, andJie-Qiao Liao*, Quantum thermalization and vanishing thermal entanglement in the open Jaynes-Cummings model,Ann. Phys. (Berlin) 2000134 (2020).

33. Jian-Yong Zhou, Yue-Hui Zhou, Xian-Li Yin, Jin-Feng Huang*, andJie-Qiao Liao*, Quantum entanglement maintained by virtual excitations in an ultrastrongly-coupled-oscillator system,Sci. Rep. 10, 12557 (2020).

32. Fen Zou, Deng-Gao Lai, andJie-Qiao Liao*, Enhancement of photon blockade effect via quantum interference,Opt. Express 28(11), 16175 (2020).

31. Jie-Qiao Liao*, Jin-Feng Huang, Lin Tian, Le-Man Kuang, and Chang-Pu Sun, Generalized ultrastrong optomechanical-like coupling,Phys. Rev. A 101, 063802 (2020).

30. Jian Huang, Yu-Hong Liu, Jin-Feng Huang*, andJie-Qiao Liao*, Generation of macroscopic entangled cat states in a longitudinally coupled cavity-QED model,Phys. Rev. A 101, 043841 (2020).

29. Jin-Feng Huang*,Jie-Qiao Liao*, and Le-Man Kuang, Ultrastrong Jaynes-Cummings model,Phys. Rev. A 101, 043835 (2020).

28. Xun-Wei Xu*, Hai-Quan Shi,Jie-Qiao Liao, and Ai-Xi Chen*, Generation of single entangled photon-phonon pairs via an atom-photon-phonon interaction,Phys. Rev. A 100, 053802 (2019).

27. Fen Zou, Li-Bao Fan, Jin-Feng Huang*, andJie-Qiao Liao*, Enhancement of few-photon optomechanical effects with cross-Kerr nonlinearity,Phys. Rev. A 99, 043837 (2019).

26. Ran Huang, Adam Miranowicz,Jie-Qiao Liao, Franco Nori, and Hui Jing*, Nonreciprocal Photon Blockade,Phys. Rev. Lett. 121, 153601 (2018).

25. Deng-Gao Lai, Fen Zou, Bang-Pin Hou, Yun-Feng Xiao, andJie-Qiao Liao*, Simultaneous cooling of coupled mechanical resonators in cavity optomechanics,Phys. Rev. A 98, 023860 (2018).

24. Jin-Feng Huang*,Jie-Qiao Liao*, Lin Tian, and Le-Man 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).

23. Jie-Qiao Liao* and Lin Tian*, Macroscopic Quantum Superposition in Cavity Optomechanics,Phys. Rev. Lett. 116, 163602 (2016).

22. Jie-Qiao Liao*, Jin-Feng Huang, and Lin Tian*, Generation of macroscopic Schroedinger-cat states in qubit-oscillator systems,Phys. Rev. A 93, 033853 (2016).

21. Jie-Qiao Liao*, C. K. Law, Le-Man Kuang, and Franco Nori, Enhancement of mechanical effects of single photons in modulated two-mode optomechanics,Phys. Rev. A 92, 013822 (2015).

20. X. Y. Lv,Jie-Qiao Liao, L. Tian*, and F. Nori*, Steady-state mechanical squeezing in an optomechanical system via Duffing nonlinearity,Phys. Rev. A 91, 013834 (2015).

19. D. Hu, S.-Y. Huang,Jie-Qiao Liao, L. Tian*, and H.-S. Goan*, Quantum coherence in ultrastrong optomechanics,Phys. Rev. A 91, 013812 (2015).

18. Jie-Qiao Liao* and F. Nori*, Single-photon quadratic optomechanics,Sci. Rep. 4, 6302 (2014).

17. Jie-Qiao Liao and F. Nori, Spectrometric reconstruction of mechanical-motional states in optomechanics,Phys. Rev. A 90, 023851 (2014).

16. Jie-Qiao Liao, K. Jacobs*, F. Nori, and R. W. Simmonds, Modulated Electromechanics: Large Enhancements of Nonlinearities,New J. Phys. (Fast Track Communications, top 5 percent) 16, 072001 (2014).

15. Q.-S. Tan,Jie-Qiao Liao, X. G. Wang, and F. Nori, Enhanced interferometry using squeezed thermal states and even or odd states,Phys. Rev. A 89, 053822 (2014).

14. Jie-Qiao Liao, Q. Q.Wu, and F. Nori, Entangling two macroscopic mechanical mirrors in a two-cavity optomechanical system,Phys. Rev. A 89, 014302 (2014).

13. Jie-Qiao Liao and F. Nori, Photon blockade in quadratically coupled optomechanical systems,Phys. Rev. A 88, 023853 (2013).

12. Jie-Qiao Liao and C. K. Law, Correlated two-photon scattering in cavity optomechanics,Phys. Rev. A 87, 043809 (2013).

11. Jin-Feng Huang,Jie-Qiao Liao, and C. P. Sun*, Photon blockade induced by atoms with Rydberg coupling,Phys. Rev. A 87, 023822 (2013).

10. Jie-Qiao Liao, H. K. Cheung, and C. K. Law, Spectrum of single-photon emission and scattering in cavity optomechanics,Phys. Rev. A 85, 025803 (2012).

9. Jie-Qiao Liao and C. K. Law, Cooling of a mirror in cavity optomechanics with a chirped pulse,Phys. Rev. A 84, 053838 (2011).

8. Jie-Qiao Liao, Jin-Feng Huang, and Le-Man Kuang, Quantum thermalization of two coupled two-level systems in eigenstate and bare-state representations,Phys. Rev. A 83, 052110 (2011).

7. Jie-Qiao Liao and C. K. Law, Parametric generation of quadrature squeezing of mirrors in cavity optomechanics,Phys. Rev. A 83, 033820 (2011).

6. Jie-Qiao Liao and C. K. Law, Correlated two-photon transport in a one-dimensional waveguide side-coupled to a nonlinear cavity,Phys. Rev. A 82, 053836 (2010).

5. Jie-Qiao Liao, Jin-Feng Huang, Le-Man Kuang, and C. P. Sun, Coherent excitation-energy transfer and quantum entanglement in a dimer,Phys. Rev. A 82, 052109 (2010).

4. Jie-Qiao Liao, H. Dong, and C. P. Sun, Single-particle machine for quantum thermalization,Phys. Rev. A 81, 052121 (2010).

3. Jie-Qiao Liao, Z. R. Gong, Lan Zhou, Yu-xi Liu, C. P. Sun, and Franco Nori, Controlling the transport of single photons by tuning the frequency of either one or two cavities in an array of coupled cavities,Phys. Rev. A 81, 042304 (2010).

2. Jin-Feng Huang, Yong Li,Jie-Qiao Liao, Le-Man Kuang*, and C. P. Sun*, Dynamic sensitivity of photon-dressed atomic ensemble with quantum criticality,Phys. Rev. A 80, 063829 (2009).

1. Jie-Qiao Liao, Jin-Feng Huang, Yu-xi Liu, Le-Man 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).

獲獎情況

所獲人才項目:

1. 湖南省科技創新領軍人才,2021年度

2. 國家自然科學“優秀青年基金”,2018年度

3. 湖南省“青年百人計劃”, 2016年度

4. 湖南省自然科學“傑出青年基金”, 2017年度

5. 湖南省“科技創新平臺與人才計劃” 優秀人才獎勵,2017年度

6. 日本JSPS Postdoctoral Fellowship Program for Foreign Researchers,2012年度

教學科研獲獎:

1. 2022年湖南師範大學第八屆“十佳師德標兵”

2. 2022年第十三屆湖南省高等教育教學成果獎三等獎,地方師範院校物理學“四位一體”人才培養體系構建與實踐,排名第五

3. 2022年第十三屆湖南省高等教育教學成果獎三等獎,新形勢下“三位一體”物理學研究生創新人才培養體系的構建與實踐,排名第五

4. 2019年度湖南師範大學青年教師課堂教學競賽校級二等獎、院級一等獎,2016、2017、 2021年度青年教師課堂教學競賽院級二等獎

5. 2018-2019年度湖南師範大學青年科研標

6. 2018年度湖南師範大學科技項目貢獻獎

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