朱黄俊
发布时间: 2018-01-05     文章作者:     访问次数: 29987

  

  

 

 

朱黄俊

  

  

  

研究员

新加坡国立大学博士 (2012)

电话:待定

E-mailzhuhuangjun@fudan.edu.cn

  

  

主要经历:(Experiences)
2003 浙江大学物理系学士

2007 北京大学物理学院硕士

2012 新加坡国立大学量子技术中心博士

2012-2015 加拿大圆周理论物理研究所博士后

2015-2017 德国科隆大学理论物理研究所博士后

2018-至今 复旦大学物理系研究员、博士生导师

  

  

教学与研究领域:
教学:热力学与统计物理II量子信息专题高等线性代数与矩阵分析

研究领域:量子信息和量子计算基础理论。主要包括量子测量、量子刻画与验证、量子计算、量子纠缠和非局域关联、量子力学基本问题、和数学物理等。

  

  

Postdoc positions in theoretical quantum information are available!

 


 

Huangjun Zhu

  

  

Professor

Ph.D.(2012), National University of Singapore, Singapore

  

  

Research Interests:

Quantum information and quantum computation, including quantum measurements, quantum characterization and verification, quantum computation, quantum entanglement and nonlocal correlations, foundations of quantum physics, and mathematical physics.

  

  

Selected Publications:

1)  C. Mao, C. Yi, and H. Zhu*, Qudit Shadow Estimation Based on the Clifford Group and the Power of a Single Magic Gate, Phys. Rev. Lett. 134, 160801 (2025).

2) K. Zhou, C. Yi, W.-Z. Yan, Z. Hou*, H. Zhu*, G.-Y. Xiang*, C.-F. Li, G.-C. Guo, Experimental Realization of Genuine Three-Copy Collective Measurements for Optimal Information Extraction, Phys. Rev. Lett. 134, 210201 (2025).

3) W.-Z. Yan, Y. Li, Z. Hou*, H. Zhu*, G.-Y. Xiang*, C.-F. Li, and G.-C. Guo, Experimental Demonstration of Inequivalent Mutually Unbiased Bases, Phys. Rev. Lett. 132, 080202 (2024).

4) Z. Li, H. Zhu*, and M. Hayashi*, Robust and efficient verification of graph states in blind measurement-based quantum computation, npj Quantum Inf. 9, 115 (2023).

5) H. Zhu*, Quantum Measurements in the Light of Quantum State Estimation, PRX Quantum 3, 030306 (2022).

6) R.-Q. Zhang, Z.-B. Hou, J.-F. Tang, J. Shang*, H. Zhu*, G.-Y. Xiang*, C.-F. Li, and G.-C. Guo, Efficient Experimental Verification of Quantum Gates with Local Operations, Phys. Rev. Lett. 128, 020502 (2022, Editors’ Suggestion).

7) Y.-G. Han, Z. Li, Y. Wang, and H. Zhu*, Optimal verification of the Bell state and Greenberger–Horne–Zeilinger states in untrusted quantum networks, npj Quantum Inf. 7, 164 (2021).

8) H. Zhu*, Zero uncertainty states in the presence of quantum memory, npj Quantum Inf. 7, 47 (2021).

9) J.-F. Tang, Z. Hou, J. Shang*, H. Zhu*, G.-Y. Xiang*, C.-F. Li, and G.-C. Guo, Experimental optimal orienteering via parallel and antiparallel spins, Phys. Rev. Lett. 124, 060502 (2020).

10) H. Zhu* and M. Hayashi, Efficient Verification of Pure Quantum States in the Adversarial Scenario, Phys. Rev. Lett. 123, 260504 (2019).

11) Z. Hou, J.-F. Tang, J. Shang, H. Zhu*, et al. Deterministic realization of collective measurements via photonic quantum walks, Nature Communications 9, 1414 (2018).

12) H. Zhu* and M. Hayashi, Universally Fisher-symmetric informationally complete measurements, Phys. Rev. Lett. 120, 030404 (2018).

13) Zhu*, Multiqubit Clifford groups are unitary 3-designs, Phys. Rev. A 96, 062336 (2017).

14) H. Zhu*, Quasiprobability representations of quantum mechanics with minimal negativity, Phys. Rev. Lett. 117, 120404 (2016).

15) H. Zhu*, Permutation Symmetry Determines the Discrete Wigner Function, Phys. Rev. Lett. 116, 040501 (2016, Editors' Suggestion).

16) H. Zhu*, M. Hayashi, L. Chen, Universal Steering Criteria, Phys. Rev. Lett. 116, 070403 (2016).




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