微动影响下被困离子的暗共振光谱

Nicol'as Adri'an Nunez Barreto, Muriel Bonetto, M. Luda, Cecilia Cormick, C. Schmiegelow
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引用次数: 0

摘要

我们研究了微动对采用λ型电平方案捕获的离子光谱的影响,这种影响会导致相干群体捕获引起的暗共振。我们的研究对象是被困在环形保罗陷阱中的钙离子,在这个陷阱中,我们只能补偿晶体中一个离子的过量微动。我们观察到,微动会影响暗共振的形状,并导致出现 "回声",其间隔由驱动频率决定。我们提出了一个理论模型,该模型与测量结果拟合良好,可用于估算原子运动的微动调制幅度。我们从光谱中估算出离子的有效温度,并观察到明显的微动加热以及足够大的过量微动冷却。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dark resonance spectra of trapped ions under the influence of micromotion
We study the influence of micromotion on the spectrum of trapped ions with a lambda-type level scheme, leading to dark resonances due to coherent population trapping. We work with calcium ions trapped in a ring-shaped Paul trap, in which one can compensate excess micromotion for only one ion of the crystal. We observe that micromotion affects the shapes of the dark resonances and causes the appearance of “echoes” separated by intervals given by the drive frequency. We present a theoretical model that provides good fits to the measurements and can be used to estimate the amplitude of the micromotion modulation of the atomic motion. We estimate an effective temperature of the ions from the spectra and observe clear micromotion heating as well as impaired cooling for sufficiently large excess micromotion.
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