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作 者:Gao-Feng Jiao Keye Zhang L.Q.Chen Chun-Hua Yuan Weiping Zhang
机构地区:[1]State Key Laboratory of Precision Spectroscopy,Quantum Institute for Light and Atoms,Department of Physics,East China Normal University,Shanghai 200062,China [2]School of Physics and Astronomy,and Tsung-Dao Lee Institute,Shanghai Jiao Tong University,Shanghai 200240,China [3]Shanghai Research Center for Quantum Sciences,Shanghai 201315,China [4]Collaborative Innovation Center of Extreme Optics,Shanxi University,Taiyuan 030006,China
出 处:《Photonics Research》2022年第2期475-482,共8页光子学研究(英文版)
基 金:National Key Research and Development Program of China(2016YFA0302001);National Natural Science Foundation of China(11974111,11874152,91536114,11574086,11974116,11654005);Shanghai Rising-Star Program(16QA1401600);Innovation Program of Shanghai Municipal Education Commission(202101070008E00099);Shanghai Talent Program;Chinese National Youth Talent Support Program;Fundamental Research Funds for the Central Universities。
摘 要:Quantum non-demolition(QND) measurement is an important tool in the fields of quantum information processing and quantum optics. The atom-light hybrid interferometer is of great interest due to its combination of an atomic spin wave and an optical wave, which can be utilized for photon number QND measurement via the AC-Stark effect. In this paper, we present an SU(1,1)-SU(2)-concatenated atom-light hybrid interferometer, and theoretically study QND measurement of the photon number. Compared to the traditional SU(2) interferometer,the signal-to-noise ratio in a balanced case is improved by a gain factor of the nonlinear Raman process(NRP)in this proposed interferometer. Furthermore, the condition of high-quality QND measurement is analyzed. In the presence of losses, the measurement quality is reduced. We can adjust the gain parameter of the NRP in the readout stage to reduce the impact due to losses. Moreover, this scheme is a multiarm interferometer, which has the potential of multiparameter estimation with many important applications in the detection of vector fields,quantum imaging, and so on.
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