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High-order corrections on the laser cooling limit in the Lamb-Dicke regime.

作者信息

Yi Zhen, Gu Wen-Ju

出版信息

Opt Express. 2017 Jan 23;25(2):1314-1325. doi: 10.1364/OE.25.001314.

DOI:10.1364/OE.25.001314
PMID:28158015
Abstract

We investigate corrections on the cooling limit of high-order Lamb-Dicke (LD) parameters in the double electromagnetically induced transparency (EIT) cooling scheme. Via utilizing quantum interferences, the single-phonon heating mechanism vanishes and the system evolves to a double dark state, from which we will obtain the mechanical occupation on the single-phonon excitation state. In addition, the further correction induced by two-phonon heating transitions is included to achieve a more accurate cooling limit. There exist two pathways of two-phonon heating transitions: direct two-phonon excitation from the dark state and further excitation from the single-phonon excited state. By adding up these two parts of correction, the obtained analytical predictions show a well consistence with numerical results. Moreover, we find that the two pathways can destructively interfere with each other, leading to the elimination of two-phonon heating transitions and achieving a lower cooling limit.

摘要

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