首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Sub-half-wavelength atom localization of a V-type three-level atom via relative phase
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Sub-half-wavelength atom localization of a V-type three-level atom via relative phase

机译:通过相关相位将V型三能级原子的半波长以下原子定位

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Coherent interaction of an atom with a position-dependent standing-wave cavity field can impart position information of a moving atom through the cavity leading to subwavelength atom localization. We show that the position of the atom along the standing-wave field is determined when the probe-field absorption is measured. We find out that absorption of the weak probe field at a certain frequency leads to subwavelength localization of the atom in either of the two half-wavelength regions of the cavity field by appropriate choice of the system parameters. In addition, we demonstrate that the position information of a three-level V-shaped moving atom strongly depends on the relative phase of applied fields. By appropriate choice of the relative phase, it is shown that the scheme can be used for localizing an atom flying through the standing-wave field to the sub-half-wavelength domain.
机译:原子与依赖于位置的驻波腔场的相干相互作用可以通过腔传递运动原子的位置信息,从而导致亚波长原子定位。我们表明,当测量探针场吸收时,将确定原子沿驻波场的位置。我们发现,通过适当选择系统参数,在一定频率下吸收弱探测场会导致原子在腔场的两个半波长区域中的任何一个处发生亚波长定位。另外,我们证明了三能级V形移动原子的位置信息强烈取决于所施加场的相对相位。通过适当选择相对相位,可以证明该方案可用于将通过驻波场飞行的原子定位到亚半波长域。

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