4.6 Article

Atom localization via interference of dark resonances

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PHYSICAL REVIEW A
卷 73, 期 2, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.73.025801

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A scheme of atom localization based on the interference of resonance of double-dark states is proposed, in which the atom interacts with a classical standing-wave field. It is found that the localization property is significantly improved due to the interaction of double-dark resonances. It is realized that the atom is localized just at the nodes of the standing-wave field with higher precision. Moreover, an improvement by a factor of 2 in the detecting probability of a single atom within the subwavelength domain can be achieved by adjusting the probe-field detuning. This scheme shows more advantages than other schemes of atom localization.

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