4.5 Article

Phase-sensitive manipulation of atom localization using probe field transmission spectrum

期刊

OPTICAL AND QUANTUM ELECTRONICS
卷 55, 期 14, 页码 -

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SPRINGER
DOI: 10.1007/s11082-023-05506-0

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Atom localization; Probe transmission spectrum; Density matrix; Phase of standing waves

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This article presents a method for finding the precise position of an atom by manipulating the transmission spectrum of a probe field using phase-sensitive operations. By controlling the relative phase between two standing waves, the number and position of localized peaks in the transmission spectrum can be regulated. The shift of these localized peaks is greatly influenced by the direction of the wave vector in the standing wave fields.
We show how phase-sensitive manipulation of a probe field transmission spectrum can be used to find the precise position of an atom. Our method is based on the controlled superposition of two standing wave fields that move in opposite directions. This causes a change in the probe field transmission spectrum. We can control the number and position of localized peaks in the transmission spectrum by changing the relative phase between the two standing waves. We also show that the shift of localized peaks is greatly influenced by the direction of the wave vector in standing wave fields. Our proposed approach provides us with an efficient method of regulating the precise locations of an atom by using phase shift and direction of the wave vector associated with the standing wave fields. This proposal may have potential applications in nano-lithography, advanced laser cooling technology, and quantum information processing.

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