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超冷原子系综的非高斯纠缠态与精密测量
引用本文:鹿博,韩成银,庄敏,柯勇贯,黄嘉豪,李朝红.超冷原子系综的非高斯纠缠态与精密测量[J].物理学报,2019,68(4):40306-040306.
作者姓名:鹿博  韩成银  庄敏  柯勇贯  黄嘉豪  李朝红
作者单位:1. 中山大学物理与天文学院, 量子工程与精密测量实验室, 珠海 519082; 2. 中山大学, 光电材料与技术国家重点实验室, 广州 510275
基金项目:国家自然科学基金(批准号:11874434,11574405,11704420)资助的课题.
摘    要:量子精密测量是基于量子力学的基本原理对特定物理量实施测量,并利用量子效应提高测量精度的交叉科学.随着超冷原子实验技术的发展,超冷原子为量子精密测量提供了一个优异的研究平台.利用发展成熟的量子调控技术,人们可以基于超冷原子系综制备一些新奇的非高斯多粒子纠缠态.基于多体量子干涉,利用这些非高斯纠缠态作为输入,可以实现超越标准量子极限的高精度测量.本文简要综述这一研究领域的进展.

关 键 词:量子精密测量  非高斯纠缠态  超冷原子系综  多体量子干涉
收稿时间:2019-01-26

Non-Gaussian entangled states and quantum metrology with ultracold atomic ensemble
Lu Bo,Han Cheng-Yin,Zhuang Min,Ke Yong-Guan,Huang Jia-Hao,Lee Chao-Hong.Non-Gaussian entangled states and quantum metrology with ultracold atomic ensemble[J].Acta Physica Sinica,2019,68(4):40306-040306.
Authors:Lu Bo  Han Cheng-Yin  Zhuang Min  Ke Yong-Guan  Huang Jia-Hao  Lee Chao-Hong
Institution:1. Laboratory of Quantum Engineering and Quantum Metrology, School of Physics and Astronomy, Sun Yat-Sen University (Zhuhai Campus), Zhuhai 519082, China; 2. State Key Laboratory of Optoelectronic Materials and Technologies, Sun Yat-Sen University (Guangzhou Campus), Guangzhou 510275, China
Abstract:Quantum metrology is the interdisciplinary of investigating how to utilize the principles of quantum mechanics to perform parameter estimation and improve the measurement precision by quantum effects. With the experimental developments of ultracold atoms, ultracold atomic ensemble provides an excellent platform for implementing quantum metrology. Attributed to well-developed techniques of quantum control, one can prepare several exotic non-Gaussian multi-particle entangled states in the ensembles of ultracold atoms. Based on many-body quanum interferometry, and using these non-Gaussian entangled states as probe, the high-precision measurement beyond the standard quantum limit can be realized. This article introduces the background and advancement of this field.
Keywords:quantum metrology  non-Gaussian entangled states  ultracold atomic ensemble  many-body quanum interferometry
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