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胡征达

作者:光电信息与物理科学学院

发布时间:2023-10-10

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胡征达

性别:男

出生日期:1986.11

职称、职务:副教授、院党委委员

E-mailhuyuanda1112@jiangnan.edu.cn

【学术简介】

博士,副教授,硕导。江南大学光电信息与物理科学学院,光电信息科学与工程系专任教师,Optics LettersOptics Express等期刊审稿人。2013年毕业于浙江大学理论物理专业,并获博士学位,主要从事量子光学、量子信息以及量子相变领域的理论研究。近年来转向涡旋结构光、湍流信道中的无线光通信、微纳光学等方面的研究。已发表SCI论文170余篇,其中以第一作者及通讯作者身份发表50余篇。主持国家自然科学基金应急管理项目1项和青年基金项目1项,国家重点研发子课题1项,江苏省自然科学基金-青年基金1项,以及中央高校基础研究专项经费项目1项,参与省部级及以上课题多项。

【工作及研究经历】:

(1) 2026.01 至 今, 江南大学, 光电信息与物理科学学院, 副教授

(2) 2015.08 2025.12, 江南大学, 理学院, 副教授

(3) 2019.11 2020.11, 美国普渡大学 , 理学院, 访问学者

(4) 2013.06 2015.08, 江南大学 , 理学院, 讲师

【研究领域】

量子光学、量子信息、量子相变、无线光通信、微纳光学

【主要论著】(著作和论文)

主要论文::

[1] Zheng-Da Hu , Ye-Qi Zhang, and Jing-Bo Xu*, Quantum communication through open-ended quantum networks, Journal of Physics A: Mathematical and Theoratical 44, 425303 (2011).

[2] Zheng-Da Hu , Qi-Liang He, Hang-Shi Xu, and Jing-Bo Xu*, Sudden transition from finite temperature spin environments, Physics Letters A 376, 3011-3016 (2012).

[3] Zheng-Da Hu , Qi-Liang He, and Jing-Bo Xu*, Quantum communication in spin chains with three-site and Dzyaloshinsky-Moriya interactions, Physica A 391, 6226 (2012).

[4] Zheng-Da Hu and Jing-Bo Xu*, Quantum phase transition in fiber-coupled quantum networks, Optics Letters 38, 3639-3641 (2013).

[5] Zheng-Da Hu , Jing-Bo Xu*, and Ye-Qi Zhang, Non-Markovian effects in dissipative flux qubits with time-dependent magnetic fields and partial-collapse quantum measurements, Journal of Applied Physics 114, 174903 (2013)

[6] Zheng-Da Hu and Jing-Bo Xu*, Control of quantum information flow and quantum correlations in the two-atom Tavis-Cummings model, Journal of Physics A: Mathematical and Theoratical 46, 155303 (2013)

[7] Zheng-Da Hu , Jing-Bo Xu*, and Dao-Xin Yao, Sudden transition and sudden change from open spin environments, Annals of Physics 350, 588-604 (2014).

[8] Zheng-Da Hu*, Yixin Zhang, and Ye-Qi Zhang, Propagation of nonclassical correlations through one-dimensional quantum networks, Quantum Information Processing13,1841-1855 (2014).

[9] Zheng-Da Hu* , Jicheng Wang, Yixin Zhang, and Ye-Qi Zhang, Dynamics of nonclassical correlations with an initial correlation, Journal of the Physical Society of Japan 83, 114004 (2014).

[10] Zheng-Da Hu* , Yixin Zhang, and Ye-Qi Zhang, Negativity of quantumness and non-Markovianity in a qubit coupled to a thermal Ising spin bath system, Communications in Theoretical Physics 62, 634-640 (2014).

[11] Yixiao Huang and Zheng-Da Hu*, Spin and field squeezing in a spin-orbit coupled Bose-Einstein condensate, Scientific Reports 5, 8006-8011 (2015).

[12] Zheng-Da Hu*, Jicheng Wang, and Yixin Zhang, Sudden transitions of trace distance discord of dipole-dipole coupled two qubits, International Journal of Modern Physics B 29, 1550138 (2015).

[13] Yixiao Huang*, Wei Zhong, Zhe Sun, and Zheng-Da Hu*, Phase diagram and spin mixing dynamics in spinor condensates with a microwave dressing field, Scientific Reports 5, 14464 (2015).

[14] Yixiao Huang*, Ning-Ju Hui, Wang-Fang Liu, En-Jia Ye, and Zheng-Da Hu*, Quantum entanglement in a spin-orbit coupled Bose-Einstein condensate, Communications in Theoretical Physics 64, 644-648 (2015).

[15] De-Wei Cao, Yixin Zhang, Jicheng Wang, and Zheng-Da Hu*, Quantum coherence in a coupled-cavity array, International Journal of Modern Physics B 30 , 1650114 (2016).

[16] Zheng-Da Hu*, Xiuye Liang, Jicheng Wang, and Yixin Zhang, Quantum coherence and quantum correlation of two qubits mediated by a one-dimensional plasmonic waveguide, Optics Express 24, 10817 (2016).

[17] Ning-Ju Hui, Yang-Yang Xu, Jicheng Wang, Yixin Zhang, and Zheng-Da Hu*, Quantum coherence and quantum phase transition in the XY model with staggered Dzyaloshinsky-Moriya interaction, Physica B 510, 7-12 (2017).

[18] Mei-Song Wei, Jicheng Wang, Yixin Zhang, and Zheng-Da Hu*, Universal decay of quantumness for photonic qubits carrying orbital angular momentum through atmospheric turbulence, IEEE Photonics Journal 10, 1-9 (2018).

[19] Mei-Song Wei, Jicheng Wang, Yixin Zhang, and Zheng-Da Hu*, Orbital-angular-momentum photons for optical communication in non-Kolmogorov atmospheric turbulence, Optics Communications 416, 89-93 (2018).

[20] Mei-Song Wei, Jicheng Wang, Yixin Zhang, and Zheng-Da Hu*, Nonclassical correlations of photonic qubits carrying orbital angular momentum through non-Kolmogorov atmospheric turbulence, Journal of the Optical Society of America A 35(6), 873-879 (2018).

[21] Yixiao Huang*, Wei Guo, Ning-Ju Hui, and Zheng-Da Hu*, Adiabatic Mach–Zehnder interferometer in a dipolar spin-1 condensate, Annals of Physics 38, 89-99 (2018).

[22] Mei-Song Wei,, Yun Zhu, Jicheng Wang, Yixin Zhang, and Zheng-Da Hu, Propagation of optical orbital-angular-momentum quantum resources via maritime atmospheric turbulence, International Journal of Modern Physics B 33(16),  1950162 (2019).

[23] Yuejin Yang, Donghui Yang, Jicheng Wang, Yun Zhu, Zhengda Hu*, and Yixin Zhang, Non-Kolmogorov atmospheric turbulence and orbital angular momentum of entangled states for optical communication, Results in Physics 15, 102676 (2019).

[24] Donghui Yang, Yuejin Yang, Jicheng Wang,  Zheng-Da Hu , Yun Zhu, and Yixin Zhang, Probability distribution of Airy beams with correlated orbital-angular-momentum states in moderate-to-strong maritime atmospheric turbulence, Optics Communications 458, 124617 (2020).

[25] Shuang Zhai, Jicheng Wang, Yun Zhu, Yixin Zhang,  and Zheng-Da Hu*, Quantum-channel capacity of distributing orbital-angular-momentum states for underwater optical quantum communication, Journal of the Optical Society of America A 38, 36 (2021).

[26] Shuang Zhai, Yun Zhu, Yixin Zhang, and Zhengda Hu*, Effects of oceanic turbulence on orbital angular momenta of optical communications, J. Mar. Sci. Eng. 8, 869 (2020).

[27] Zheng-Da Hu*, Shuang Zhai, Jicheng Wang, Yun Zhu, and Yixin Zhang, Tripartite orbital angular momentum quantum information and non-Kolmogorov turbulent atmosphere, Quantum Information Processing 20, 263 (2021).

[28] Donghui Yang#, Zheng-Da Hu#, Shuailing Wang, and Yun Zhu*, Phase correlation arc and universal decay of entangled orbital angular momentum qubit states in atmospheric turbulence, Optics Letters 46, 5461 (2021).

[29] Zhengda Hu, Xingyu Gao, and Tongcang Li, Stability of the discrete time-crystalline order in spin-optomechanical and open cavity QED systems, Photonics 9, 61 (2022).

[30] Zheng-Da Hu*, Yun Zhu, and Jicheng Wang, Quantum coherence of thermal biphoton orbital angular momentum state and its distribution in non-Kolmogorov atmospheric turbulence, Optics Express 30, 20185 (2022).

[31] Zheng-Da Hu*, Jicheng Wang, Yun Zhu, et al., Impacts of low-order aberrations on capacity of orbital-angular-momentum quantum states, Communications in Theoretical Physics 75(5): 055104 (2023).

[32] Ziqing Yin, Jicheng Wang, Yun Zhu, et al., Propagation of radial phase modulated vortex beams in atmospheric turbulence, Optics Communications 549: 129941 (2023). (通讯)

[33] Xiangjiang Bao, Yun Zhu, Jicheng Wang, et al., Channel capacity and quantum entanglement of autofocusing hypergeometric-Gaussian beams through non-Kolmogorov turbulence, Physica Scripta 98(3): 035101 (2023). (通讯)

[34] Zhizhong Kang, Yun Zhu, Jicheng Wang, et al., Anisotropic atmospheric turbulence and partially coherent self-focusing vortex beams for wireless optical communication, Journal of the Optical Society of America B 41(6): 1290-1295 (2024). (通讯)

[35] Zhenhua Yin, Jicheng Wang, Yueke Wang, et al., Qubit-qubit quantum coherence mediated by an epsilon-near-zero waveguide. Communications in Theoretical Physics 76(12): 125102 (2024). (通讯)

[36] Xiaotong Yu Ziqing Yin, Jicheng Wang, et al., Propagation of perfect Laguerre–Gaussian entangled states in non-Kolmogorov atmospheric turbulence, Physica Scripta 99(1): 015105 (2024). (通讯)

[37] Yang Bai, Yun Zhu, Jicheng Wang, et al., Average capacity and bit error rate of vortex gamma beams propagating in non-Kolmogorov atmospheric turbulence, Optics Express 32(13): 23584-23596 (2024). (通讯)

[38] Xiaotong Yu, Wei Zhong, Yun Zhu, et al., Fisher information of orbital angular momentum quantum states in atmospheric turbulence, Optics Express 32(16): 27327-27341 (2024). (通讯)

[39] Peixian Wu, Yun Zhu, Jicheng Wang, et al., Decay of multi-mode cylindrical-vector-vortex beams in atmospheric turbulence, Physics Letters A 555: 130796 (2025). (通讯)

[40] Zheng-Da Hu, Wei Zhong, Jicheng Wang, et al., Quantum information and quantum phase transitions in atom–molecule conversion systems, International Journal of Modern Physics B 40(02): 2650004 (2026). (一作兼通讯)

[41] Yalong Qin, Jicheng Wang, Yun Zhu, et al., Ideal long-range quantum-resource generator in zero-index photonic crystal waveguide, Applied Physics Letters 128(16): 164001 (2026). (编辑精选,第一通讯)

【科研、教学项目】

科研项目:

1. 国家重点研发计划, 2022YFE0122300, 可重构电磁超表面空频域电磁波调控机理与关键技术研究, 2023.01 2024.12, 100万元, 结题, 参与

2. 国家自然科学基金青年项目,11504140,基于迹距离的有限温度下的量子相变理论研究,2016.012018.1223.7万元,结题,主持

3. 江苏自然科学基金青年项目,BK20140128,量子系统中的非经典关联及其相关问题研究,2014.072017.0620万元,结题,主持

4. 国家自然科学基金应急管理项目,11447174,基于量子相变的腔QED及自旋系统中的量子通信理论研究,2015.012015.125万元,结题,主持

5. 国家自然科学基金面上项目,11274274,量子关联的操控及相关问题的研究,2013.012016.1270 万元,结题,参与

教学项目:

1. 校级动教育示范实践项目,光电信息专业创新劳动教育与实训平台教学研究与探索,2022,结题,参与

2. 校级重点项目,光电信息科学与工程专业人才培养模式与课程体系研究,2017,结题,参与

【科研、教学成果及获奖】

科研获奖:

1. 2020省物理学会科学技术二等奖 (3/3)

2. 2018 无锡市自然科学论文特等奖(3/3)

教学获奖:

1. 2019年江南大学教学成果奖 (3/5)

【荣誉与奖励】

1. 2014-2016年度校优秀共产党员  

2. 2016年江苏省高等学校本专科优秀毕业论文一等奖优秀指导教师 (1/2)

3. 2023年第十一届全国大学生光电竞赛(东部赛区)优秀指导教师 (1/1)

4. 2023年第十一届全国大学生光电设计竞赛国赛三等奖指导教师(1/2)

【在读硕、博士人数】

硕士4

【已毕业硕、博士人数】

硕士8

【以上资料更新日期】

20265




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