仪器科学与技术学科(按姓名拼音排序)
教师队伍
副高职称

何宛亭
性 别: 女
聘用岗位/专技职务: 预聘助理教授
所在学科: 仪器科学与技术
研究方向: 量子光学,量子信息
电子邮件: wantinghe@bit.edu.cn
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个人简介
【基本】何宛亭,女,1994年10月出生于黑龙江省五大连池市,博士。现从事量子光学与量子信息领域的教学与科研工作,主要研究方向包括量子精密测量、开放量子系统、量子模拟、量子计算等。重点研究量子资源在精密测量中的应用,以及开放系统中量子系统的动力学演化与模拟,为推动量子精密测量技术走向实际应用提供理论支持。
【科研】长期从事量子精密测量、量子模拟及开放量子系统相关研究,在Physical Review Letters 、npj Quantum Information、Frontiers of Physics、Physical Review A 等国际期刊上发表SCI论文10余篇。
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教育经历
2019.09-2023.01,北京师范大学,博士;
2016.09-2019.06,北京师范大学,硕士;
2012.09-2016.06,北京师范大学,学士。 -
工作经历
2025.08-至今,金年会jinnianhuicom,教师;
2023.02-2025.02,Okinawa Institute of Science and Technology,博士后研究员。 -
研究领域
1.量子精密测量;
2.开放量子系统;
3.量子模拟;
4.量子计算; -
代表性学术成果
【论文】
1. J. Dong, W.-T. He, S.-D. Zou, D.-L. Zhou, Q. Ai*,Searching for axionlike dark matter by amplifying a weak magnetic field with the quantum Zeno effect,Physical Review D, 2025, 112, 103528.
2. J. Wang, W.-T. He, H.-B. Wang*, Q. Ai*,Universal quantum gates by nonadiabatic holonomic evolution for the surface electron,Frontiers in Physics, 2024, 12, 1348804.
3. J. Wang*, W.-T. He, C.-W. Lu, Y.-Y. Wang, Q. Ai, H.-B. Wang*,Controlled-NOT Gate Based on the Rydberg States of Surface Electrons,Annalen der Physik, 2023, 535, 2300138.
4. W.-T. He, C.-W. Lu, Y.-X. Yao, H.-Y. Zhu, Q. Ai*,Criticality-based quantum metrology in the presence of decoherence,Frontiers of Physics, 2023, 18, 31304.
5. X.-Y. Long†, W.-T. He†, N.-N. Zhang†, K. Tang, Z.-D. Lin, H.-F. Liu, X.-F. Nie, G.-R. Feng, J. Li, T. Xin, Q. Ai*, D.-W. Lu*,Entanglement-Enhanced Quantum Metrology in Colored Noise by Quantum Zeno Effect,Physical Review Letters, 2022, 129, 070502.
6. X.-Y. Chen†, N.-N. Zhang†, W.-T. He†, X.-Y. Kong, M.-J. Tao, F.-G. Deng, Q. Ai*, G.-L. Long*,Global correlation and local information flows in controllable non-Markovian open quantum dynamics,npj Quantum Information, 2022, 8, 22.
7. W.-T. He†, H.-Y. Guang†, Z.-Y. Li†, R.-Q. Deng, N.-N. Zhang, J.-X. Zhao*, F.-G. Deng, Q. Ai*,Quantum metrology with one auxiliary particle in a correlated bath and its quantum simulation,Physical Review A, 2021, 104, 062429.
8. W.-T. He, J. Wang, T.-T. Zhang, F. Alzahrani, A. Hobiny, A. Alsaedi, T. Hayat, F.-G. Deng*,High-Efficiency Three-Party Quantum Key Agreement Protocol with Quantum Dense Coding and Bell States,International Journal of Theoretical Physics, 2019, 58, 2834–2846. -
更新时间:2026年08月
