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Sub-Half-Wavelength Atom Localization via Coherent Control of Autler-Townes Spontaneous Spectrum
作者姓名:徐俊  胡响明
作者单位:Department of Physics, Huazhong Normal University, Wuhan 430079
基金项目:Supported by the National Natural Science Foundation of China under Grant Nos 60378008 and 10574052.
摘    要:We show that it is possible to localize an atom in a half-wavelength region by relaxing the strict condition that the atom is prepared in a specific excited state as in the recently proposed scheme Phys. Rev. A 65 (2002) 043819]. In particular, we consider a four-level atom, for which a weak exciting field transfers population from the ground state to the excited state and three control fields (one standing-wave field while two travelling-wave fields) couple the excited state and two auxiliary states. By tuning the exciting field and by varying the collective phase of the control fields, the atom is localized in one of the two half-wavelength regions with 50% detecting probability. The main advantage of the scheme is the experimental accessibility and controllability.

关 键 词:半波长  波谱学  连接控制  原子局部化
收稿时间:2006-12-5
修稿时间:2006-12-05

Sub-Half-Wavelength Atom Localization via Coherent Control of Autler--Townes Spontaneous Spectrum
XU Jun,HU Xiang-Ming.Sub-Half-Wavelength Atom Localization via Coherent Control of Autler-Townes Spontaneous Spectrum[J].Chinese Physics Letters,2007,24(4):933-936.
Authors:XU Jun  HU Xiang-Ming
Institution:Department of Physics, Huazhong Normal University, Wuhan 430079
Abstract:We show that it is possible to localize an atom in a half-wavelength regionby relaxing the strict condition that the atom is prepared in a specific excited state as in the recently proposed scheme Phys. Rev. A 65(2002)043819]. In particular, we consider a four-level atom, for which a weak exciting field transfers population from the ground state to the excited state and three control fields (one standing-wave field while two travelling-wave fields) couple the excited state and two auxiliary states. By tuning the exciting field and by varying the collective phase of the control fields, the atom is localized in one of the two half-wavelength regions with 50% detecting probability. The main advantage of the scheme is the experimental accessibility and controllability.
Keywords:42  50  Gy  32  80  Qk  32  80  Lg
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