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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >High-precision three-dimensional atom localization via phase-sensitive absorption spectra in a four-level atomic system
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High-precision three-dimensional atom localization via phase-sensitive absorption spectra in a four-level atomic system

机译:四级原子系统中通过相敏吸收光谱通过相敏吸收光谱的高精度三维原子定位

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摘要

We propose a new scheme for highly efficient three-dimensional (3D) atom localization in a coherently driven closed-loop four-level atomic system via measuring the probe absorption of the weak field. Due to the spatially dependent atom-field interaction, the absorption spectra of the weak probe laser field carry the information about the atomic position. By solving the density-matrix equations of motion and properly modulating the system parameters such as the probe detuning, the relative phase of three driving fields, and the intensity of the control and microwave fields, we can realize high-precision and high-resolution 3D atom localization. Furthermore, we can find the atom at a certain position with 100% probability under appropriate conditions, and then we employ the dressed-state analysis to explain qualitatively the reason of high-precision 3D atom localization.
机译:我们通过测量弱场的探测吸收,提出了一种新的高效三维(3D)原子定位的高效三维(3D)原子定位。 由于空间依赖性原子场相互作用,弱探针激光场的吸收光谱携带有关原子位置的信息。 通过求解运动的密度 - 矩阵方程并适当地调制系统参数,例如探针静脉,三个驱动场的相对相位,以及控制和微波场的强度,我们可以实现高精度和高分辨率的3D 原子定位。 此外,我们可以在适当的条件下以100%的概率在某个位置找到原子,然后我们采用穿着状态分析来解释高精度3D原子定位的原因。

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