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Atom localization via controlled spontaneous emission in a five-level atomic system

机译:通过五能级原子系统中的受控自发发射来进行原子定位

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摘要

We investigate the one- and two-dimensional atom localization behaviors via spontaneous emission in a coherently driven five-level atomic system by means of a radio-frequency field driving a hyperfine transition. It is found that the detecting probability and precision of atom localization behaviors can be significantly improved via adjusting the system parameters. More importantly, the two-dimensional atom localization patterns reveal that the maximal probability of finding an atom within the sub-wavelength domain of the standing waves can reach unity when the corresponding conditions are satisfied. As a result, our scheme may be helpful in laser cooling or the atom nano- lithography via atom localization.
机译:我们通过驱动超精细跃迁的射频场,通过自发发射在相干驱动的五能级原子系统中研究一维和二维原子的定位行为。发现通过调整系统参数可以显着提高原子定位行为的检测概率和精度。更重要的是,二维原子定位模式表明,在满足相应条件的情况下,在驻波的子波长域内找到原子的最大概率可以达到1。结果,我们的方案可能有助于通过原子定位的激光冷却或原子纳米光刻。

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