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个人简介

沈宏志,副教授(破格),理学博士,硕士生导师,东北师范大学优秀师资博士后。主要从事量子光学及开放量子系统理论研究,其主要贡献在于:建立了非马尔可夫系统中的非传统单光子阻塞理论;给出了非马尔可夫开放系统中的线性响应公式;基于二阶非线性克尔介质材料研究了量子光学二极管;利用三阶克尔非线性材料实现了非常规单光子阻塞效应;在三能级拉曼原子系统中提出了存储单光子脉冲的方法;基于纯退相干的两模玻色-爱因斯坦凝聚系统给出了平均场近似的BGGKY高阶修正等。 【学习工作简历】 2007/09-2011/06 渤海大学 理学学士 2011/09-2016/06 大连理工大学 理学博士(硕博连读) 2016/08-2018/08 东北师范大学 师资博士后 2017/05-2017/06 北京大学量子材料中心访问学者 2018/03-2018/04 西班牙巴斯克大学访问学者 2018/09-至今 东北师范大学 物理学院 副教授(破格)

研究领域

主要科研方向:量子光学,开放量子系统理论(non-Markovian),量子优化控制与量子器件,光子阻塞理论,量子响应理论,玻色-爱因斯坦凝聚等

近期论文

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1. H. Z. Shen, S. Xu, H. T. Cui, and X. X. Yi, Non-Markovian dynamics of a system of two-level atoms coupled to a structured environment, Phys. Rev. A 99, 032101 (2019). 2. Shuang Xu, H. Z. Shen, X. X. Yi, and W. Wang, Readout of the spectral density of an environment from the dynamics of an open system, accepted by Phys. Rev. A (2019). 3. H. Z. Shen, S. Xu, Su Yi, X. X. Yi, Controllable dissipation of a qubit coupled to an engineering reservoir, Phys. Rev. A 98, 062106 (2018). 4. H. Z. Shen, C. Shang, Y. H. Zhou, and X. X. Yi, Unconventional single-photon blockade in non-Markovian systems, Phys. Rev. A 98, 023856 (2018). 5. H. Z. Shen, S. L. Su, Y. H. Zhou, and X. X. Yi, Non-Markovian quantum Brownian motion in electric fields, Phys. Rev. A 97, 042121 (2018). 6. H. Z. Shen, S. Xu, Hong Li, S. L. Wu, and X. X. Yi, Linear response theory for periodically driven systems with non-Markovian effects, Opt. Lett. 43, 2852 (2018). 7. H. Z. Shen, D. X. Li, S. L. Su, Y. H. Zhou, and X. X. Yi, Exact non-Markovian dynamics of qubits coupled to two interacting environments, Phys. Rev. A 96, 033805 (2017). 8. H. Z. Shen, Hong Li, Y. F. Peng, and X. X. Yi, Mechanism for Hall conductance of two-band systems against decoherence, Phys. Rev. E 95, 042129 (2017). 9. H. Z. Shen, D. X. Li, and X. X. Yi, Non-Markovian linear response theory for quantum open systems and its applications, Phys. Rev. E 95, 012156 (2017). 10. H. Z. Shen, S. Xu, Y. H. Zhou, G. C. Wang, and X. X. Yi, Unconventional photon blockade from bimodal driving and dissipations in coupled semiconductor microcavities, J. Phys. B 51, 035503 (2018). 11. H. Z. Shen, S. S. Zhang, C. M. Dai, and X. X. Yi, Master equation for open two-band systems and its applications to Hall conductance, J. Phys. A 51 065302 (2018). 12. S. L Su, Y. Z. Tian, H. Z. Shen*, H. P. Zang, E. j. Liang, and S. Zhang, Applications of the modified Rydberg antiblockade regime with simultaneous driving, Phys. Rev. A 96, 042335 (2017). 13. S. L Su, H. Z. Shen*, E. j. Liang, and S. Zhang, One-step construction of the multiple-qubit Rydberg controlled-PHASE gate, Phys. Rev. A 98, 032306 (2018). 14. H. Z. Shen, X. Q. Shao, G. C. Wang, X. L. Zhao, and X. X. Yi, Quantum phase transition in a coupled two-level system embedded in anisotropic three dimensional photonic crystals, Phys. Rev. E 93, 012107 (2016). 15. H. Z. Shen, Y. H. Zhou, and X. X. Yi, Tunable photon blockade in coupled semiconductor cavities, Phys. Rev. A 91, 063808 (2015). 16. H. Z. Shen, M. Qin, X. Q. Shao, and X. X. Yi, General response formula and application to topological insulator in quantum open system, Phys. Rev. E 92, 052122 (2015). 17. H. Z. Shen, Y. H. Zhou, H. D. Liu, G. C. Wang, and X. X. Yi, Opt. Express 23, 32835 (2015). 18. H. Z. Shen, W. Wang, and X. X. Yi, Sci. Rep. 4, 6455 (2014). 19. H. Z. Shen, Y. H. Zhou, and X. X. Yi, Quantum optical diode with semiconductor microcavities, Phys. Rev. A 90, 023849 (2014). 20. H. Z. Shen, M. Qin, X. M. Xiu, and X. X. Yi, Phys. Rev. A 89, 062113 (2014).

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