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基础物理研究部

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姓名:彭新华

联系邮箱:xhpeng@ustc.edu.cn

教育经历

1998-2003  中科院武汉物理与数学研究所,理学博士

1994-1998  湖南师范大学,物理系,理学学士

工作经历

2008至今  中国科学技术大学教授

2005-2008  德国多特蒙德大学,Research Fellow

‌2003-2005  德国多特蒙德大学,洪堡学者

研究简介

一直致力于核磁共振体系量子计算及量子信息处理的实验研究,在量子算法、量子模拟,量子控制,量子精密测量以及量子力学基本问题测试等重要课题方面开展了系统性的研究,取得了一系列对推动学科领域发展有实质性贡献的研究成果。如提出了超高灵敏度磁探测新技术,创造了超低频段灵敏度世界纪录;开展了桌面式暗物质直接搜寻,突破了超新星天文学观测界限; 量子-经典协同优化新方法;实现了绝热量子质因子分解算法,连续十年保持量子计算实验分解质因数最大整数的世界纪录;实现了李-杨零点、交错时序关联和拓扑相变等多个著名多体量子物理现象的首次模拟实验;揭示随机自旋模型的非平衡量子多体动力学中的普适性等。共发表SCI论文135篇,其中以第一/通讯作者发表Nat. Phys. 3篇、Sci. Adv. 4篇、PNAS 2篇、Phys. Rev. X 2篇、Phys. Rev. Lett. 19篇、Nat. Commun. 2篇,谷歌学术引用6713次, H因子44,Web of Science SCI累计引用 4,768,H因子37。

核心研究方向‌:

1.‌基于磁共振的量子控制、量子计算和量子模拟发展高精度量子控制技术,开展量子算法和量子模拟的实验研究,对凝聚态物理和量子化学中的重要物理问题进行模拟。

2.基于磁共振的量子度量学高灵敏度原子磁力计平台搭建及优化,发展突破经典测量极限的量子精密测量技术,量子陀螺仪等。

3.‌零场-超低场核磁共振谱学 零场-超低场核磁共振谱仪平台搭建及优化,低场下强关联自旋体系的复杂动力学及其量子控制,零场-超低场核磁共振谱学及其应用,例如物质结构、材料、医学、基础物理和新奇物理(轴子)的探索等。

4.半导体自旋量子信息技术低温半导体光探测核磁共振平台搭建及优化,发展电子-核自旋超极化、电子-核自旋多体相互作用调控新方法和技术,开展量子计算、精密测量、凝聚态量子多体物理等方面研究。

主要荣誉

2024  安徽省自然科学奖一等奖

2023 “科学探索奖”(数理领域首位女性获奖人)

2023  年度中国科学院优秀导师

2021  年度杰出研究校长奖

2019  国家高层次科技创新领军人才

2019  全国三八红旗手荣誉称号

2018  安徽青年五四奖章

2016  教育部长江学者奖励计划青年学者

2016  安徽省五一劳动奖章、五一巾帼标兵称号

2015  中国青年女科学家奖

代表性论文

1.Min Jiang, Yushu Qin, Yuanhong Wang, Ying Huang, Xinhua Peng, and Dmitry Budker. Amplification mechanism with interacting atomic gases. Proceedings of the National Academy of Sciences, 2025, 122(19): e2419683122.

2.Haowen Su*, Shiju Hu*, Yang Ding, Yuanhong Wang, Min Jiang†, and Xinhua Peng. Limits on Anomalous Spin-Spin Interactions Using Noble-Gas Nuclear Magnetic Resonance. Phys. Rev. Lett., 134(22): 223201 (2025),

3.Haowen Su, Min Jiang, Yuanhong Wang, Ying Huang, Xiang Kang, Wei Ji, Xinhua Peng, and Dmitry Budker, New Constraints on Axion-Mediated Spin Interactions Using Magnetic Amplification. Phys. Rev. Lett. 133, 191801 (2024).

4.Ze Wu*, Changsheng Hu*, Tianyun Wang*, Yuquan Chen, Yuchen Li, Liqiang Zhao, Xin-You Lü, and Xinhua Peng, Experimental Quantum Simulation of Multicriticality in Closed and Open Rabi Model. Phys. Rev. Lett. 133, 173602 (2024).

5.Yuchen Li, Tian-Gang Zhou, Ze Wu, Pai Peng, Shengyu Zhang, Riqiang Fu, Ren Zhang, Wei Zheng, Pengfei Zhang, Hui Zhai, Xinhua Peng & Jiangfeng Du. Emergent universal quench dynamics in randomly interacting spin models. Nature Physics, 2024,

6.Minxiang Xu, Min Jiang, Yuanhong Wang, Haowen Su, Ying Huang, and Xinhua Peng, Cooperative spin amplifier for enhanced quantum sensing. Phys. Rev. Lett. 133, 133202 (2024)

7.Qin, Yushu and Shao Zhenhan and Hong, Taizhou and Wang, Yuanhong and Jiang, Min and Peng, Xinhua*. New Classes of Magnetic Noise Self-Compensation Effects in Atomic Comagnetometer. Phys. Rev. Lett. 133, 023202 (2024).

8.Min Jiang, Ying Huang, Chang Guo, Haowen Su, Yuanhong Wang, Xinhua Peng*, and Dmitry Budker. Observation of magnetic amplification using dark spins. Proceedings of the National Academy of Sciences, 2024, 121(17): e2315696121.

9.Min Jiang, Taizhou Hong, Dongdong Hu, Yifan Chen, Fengwei Yang, Tao Hu, Xiaodong Yang, Jing Shu*, Yue Zhao*, Xinhua Peng* & Jiangfeng Du. Long-baseline quantum sensor network as dark matter haloscope. Nat. Commun. 15(1): 3331 (2024).

10.Ze Wu, Ping Wang, Tianyun Wang, Yuchen Li, Ran Liu, Yuquan Chen, Xinhua Peng*, and Ren-Bao Liu*. Selective detection of dynamics-complete set of correlations via quantum channels. Phys. Rev. Lett. 132, 200802 (2024).

11.Yuanhong Wang, Ying Huang, Chang Guo, Min Jiang*, Xiang Kang, Haowen Su, Yushu Qin, Wei Ji, Dongdong Hu, Xinhua Peng*, Dmitry Budker, Search for exotic parity-violation interactions with quantum spin amplifiers. Sci. Adv. 9, eade0353 (2023).

12.Yuanhong Wang, Haowen Su, Min Jiang*, Ying Huang, Yushu Qin, Chang Guo, Zehao Wang, Dongdong Hu, Wei Ji, Pavel Fadeev, Xinhua Peng*, and Dmitry Budker. Limits on Axions and Axionlike Particles within the Axion Window Using a Spin-Based Amplifier. Phys. Rev. Lett. 129, 051801 (2022).

13.Min Jiang, Yushu Qin, Xin Wang, Yuanhong Wang, Haowen Su, Xinhua Peng*, and Dmitry Budker. Floquet Spin Amplification. Phys. Rev. Lett. 128, 233201 (2022).

14.Ran Liu, Yu Chen, Min Jiang, Xiaodong Yang, Ze Wu, Yuchen Li, Haidong* Yuan, Xinhua Peng* & Jiangfeng Du. Experimental critical quantum metrology with the Heisenberg scaling. Npj Quantum. Inform. 7, 170 (2021).

15.Min Jiang, Haowen Su, Antoine Garcon, Xinhua Peng* & Dmitry Budker. Search for axion-like dark matter with spin-based amplifiers. Nat. Phys. 17, 1402-+ (2021).

16.Xi Chen, Ze Wu, Min Jiang, Xin-You Lü*, Xinhua Peng* & Jiangfeng Du. Experimental quantum simulation of superradiant phase transition beyond no-go theorem via antisqueezing. Nat. Commun. 12, 6281 (2021).

17.Haowen Su, Yuanhong Wang#, Min Jiang*, Wei Ji, Pavel Fadeev, Dongdong Hu, Xinhua Peng*, Dmitry Budker. Search for exotic spin-dependent interactions with a spin-based amplifier. Sci. Adv. 7, eabi9535 (2021).

18.Min Jiang, Haowen Su, Ze Wu, Xinhua Peng, Dmitry Budker. Floquet maser. Sci. Adv. 7, eabe0719 (2021).

19.Xiaodong Yang, Jayne Thompson, Ze Wu, Mile Gu*, Xinhua Peng* & Jiangfeng Du. Probe optimization for quantum metrology via closed-loop learning control. Npj Quantum. Inform. 6, 62 (2020).18)

20.H. Wang, Z. Ma, S. Wu, W. Zheng, Z. Cao, Z. Chen, Z. Li, S.-M. Fei, X. Peng, V. Vedral, and J. Du. Uncertainty equality with quantum memory and its experimental verification. npj Quantum Information 5, 39 (2019).

21.Zhaokai Li, Xiaomei Liu, Hefeng Wang, Sahel Ashhab, Jiangyu Cui, Hongwei Chen, XinhuaPeng, and Jiangfeng Du, Quantum Simulation of Resonant Transitions for Solving the Eigen-problem of an Effective Water Hamiltonian, Physical Review Letters 122, 090504 (2019).

22.Ping Wang, Chong Chen, Xinhua Peng, Jorg Wrachtrup, Ren-Bao Liu, Characterization of Arbitrary-Order Correlations in Quantum Baths by Weak Measurement, Physical Review Letters 123, 050603 (2019).

23.Zhihuang Luo, Jun Li, Zhaokai Li, Ling-Yan Hung, Yidun Wan, Xinhua Peng, and Jiangfeng Du, Experimentally Probing Topological Order and Its Breakdown through Modular Matrices, Nature Physics 14, 160 (2018).

24.M. Jiang, T. Wu, J. W. Blanchard, G. Feng, X. Peng, and D. Budker, Experimental benchmarking of quantum control in zero-field nuclear magnetic resonance, Science Advances 4, eaar6327 (2018).

25.W. Zheng, Z. Ma, H. Wang, S.-M. Fei, and X. Peng, Experimental demonstration of observability and operability of robustness of coherence, Phys. Rev. Lett. 120, 230504 (2018).

26.W.-L. Chang*, Q. Yu, Z. Li, J. Chen, X. Peng*, and M. Feng*, Quantum speedup in solving the maximal- clique problem, Phys. Rev. A 97, 032344 (2018).

27.J. Cui, J. Li, X. Liu, X. Peng and R. Fu, Engineering spin hamiltonians using multiple pulse sequences in solid state nmr spectroscopy, J. Magn. Resson. 294, 83 (2018).

28.Jun Li, Ruihua Fan, Hengyan Wang, Bingtian Ye, Bei Zeng, Hui Zhai, Xinhua Peng, Jiangfeng Du, Measuring out-of-time-order correlators on a nuclear magnetic resonance quantum simulator. Phys. Rev. X 7, 031011 (2017) [Featured in Physics, Selected for a Viewpoint in Physics].

29.Xi-Wei Yao, Hengyan Wang, Zeyang Liao, Ming-cheng Chen, Jian Pan, Jun Li, Kechao Zhang, Xingcheng Lin, Zhehui Wang, Zhihuang Luo, Wenqiang Zheng, Jianzhong Li, Meisheng Zhao, Xinhua Peng, and Dieter Suter, Quantum image processing and its application to edge detection: Theory and experiment, Phys. Rev. X 7, 031041(2017).

30.Ji Bian, Min Jiang, Jiangyu Cui, Xiaomei Liu, Botao Chen, Yunlan Ji, Bo Zhang, John Blanchard, Xinhua Peng and Jiangfeng Du,Universal Quantum Control in Zero-field Nuclear Magnetic Resonance, Phys. Rev. A 95, 052342 (2017).

31.Jiangyu Cui, Jun Li, Riqiang Fu and Xinhua Peng, Transient NOE Enhances Sensitivity of Low-$\gamma$ Nuclei in Solid-State MAS NMR of Mobile Systems, J. Magn. Reson. 284, 73 (2017).

32.Jun Li, Xiaodong Yang, Xinhua Peng, Changpu Sun, Hybrid Quantum-Classical Approach to Quantum Optimal Control, Physical Review Letters 118, 150503(2017).

33.J. Li, D.W. Lu , Z. H. Luo, R. Laflamme, X. H. Peng, and J. F. Du*, Maximally accessible purity in coherently controlled open quantum systems: application to quantum state engineering, Phys. Rev. A 94, 012312 (2016).

34.Jun Li, Jiangyu Cui, Raymond Laflamme, Xinhua Peng, Compilation of selective pulse network on liquid-state nuclear magnetic resonance system, Phys. Rev. A 94, 032316 (2016).

35.Wenchao Ma, Zhihao Ma, Hengyan Wang, Zhihua Chen, Ying Liu, Fei Kong, Zhaokai Li, Xinhua Peng, Mingjun Shi, Fazhan Shi, Shao-Ming Fei, and Jiangfeng Du, Experimental Test of Heisenberg’s Measurement Uncertainty Relation Based on Statistical Distances, Physical Review Letters 116, 160405 (2016).

36.Xinhua Peng, Hui Zhou, Bo-Bo Wei, Jiangyu Cui, Jiangfeng Du, and Ren-Bao Liu, Experimental Observation of Lee-Yang Zeros, Physical Review Letters 114, 010601 (2015). highlight article.

37.Xinhua Peng, ZhihuangLuo, WenqiangZheng, Supeng Kou, Dieter Suter, and Jiangfeng Du, Experimental implementation of adiabatic passage between different topological orders, Physical Review Letters 113, 080404(2014).

38.Zhaokai Li, Hui Zhou, ChenyongJu, Hongwei Chen, WenqiangZheng, Dawei Lu, Xing Rong, Changkui Duan, Xinhua Peng, and Jiangfeng Du, Experimental Realization of a Compressed Quantum Simulation of a 32-Spin Ising Chain, Physical Review Letters 112, 220501 (2014). highlight article.

39.NanyangXu, Jing Zhu, Dawei Lu, Xianyi Zhou, Xinhua Peng, and Jiangfeng Du, Quantum Factorization of 143 on a Dipolar-Coupling Nuclear Magnetic Resonance System, Physical Review Letters 108, 130501 (2012).

40.Hongwei Chen, Dawei Lu, Bo Chong, Gan Qin, Xianyi Zhou, Xinhua Peng, and Jiangfeng Du, Experimental Demonstration of Probabilistic Quantum Cloning, Physical Review Letters 106, 180404 (2011).

41.Dawei Lu, NanyangXu, RuixueXu, Hongwei Chen, Jiangbin Gong, Xinhua Peng, and Jiangfeng Du, Simulation of Chemical Isomerization Reaction Dynamics on a NMR Quantum Simulator, Physical Review Letters 107, 020501 (2011).

42.Jiangfeng Du, NanyangXu, Xinhua Peng, Pengfei Wang, Sanfeng Wu, and Dawei Lu, NMR Implementation of a Molecular Hydrogen Quantum Simulation with Adiabatic State Preparation, Physical Review Letters 104, 030502 (2010). highlight article

43.Xinhua Peng, Sanfeng Wu, Jun Li, Dieter Suter, and Jiangfeng Du, Observation of the Ground-State Geometric Phase in a Heisenberg XY Model, Physical Review Letters 105, 240405 (2010).

44.Fazhan Shi, Xing Rong, NanyangXu, Ya Wang, Jie Wu, Bo Chong, Xinhua Peng, JulianeKniepert, Rolf-Simon Schoenfeld, Wolfgang Harneit, MangFeng, and Jiangfeng Du, Room-Temperature Implementation of the Deutsch-Jozsa Algorithm with a Single Electronic Spin in Diamond, Physical Review Letters 105, 040504 (2010).

45.Xinhua Peng, Jingfu Zhang, Jiangfeng Du, and Dieter Suter, Quantum Simulation of a System with Competing Two- and Three-Body Interactions, Physical Review Letters 103, 140501 (2009).

46.Xinhua Peng, Zeyang Liao, NanyangXu, Gan Qin, Xianyi Zhou, Dieter Suter, and Jiangfeng Du, Quantum Adiabatic Algorithm for Factorization and Its Experimental Implementation, Physical Review Letters 101, 220405 (2008).

47.Jingfu Zhang, Xinhua Peng, Nageswaran Rajendran, and Dieter Suter:Detection of Quantum Critical Points by a Probe Qubit. Physical Review Letters. 100, 100501 (2008).

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