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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Synchronization of internal and external degrees of freedom of atoms in a standing laser wave
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Synchronization of internal and external degrees of freedom of atoms in a standing laser wave

机译:固定激光中原子内部和外部自由度的同步

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摘要

We consider dissipative dynamics of atoms in a strong standing laser wave and find a nonlinear dynamical effect of synchronization between center-of-mass motion and internal Rabi oscillations. The synchronization manifests itself in the phase space as limit cycles, which may have different periods and riddled basins of attraction. The effect can be detected in fluorescence spectra of atoms as equidistant sideband frequencies with the space between adjacent peaks to be inversely proportional to the value of the period of the respective limit cycle. With increasing intensity of the laser field, we numerically observe cascades of bifurcations that eventually end up in settling a strange chaotic attractor. A broadband noise is shown to destroy a fine structure of the bifurcation scenario, but prominent features of period-1 and period-3 limit cycles survive under a weak noise. The character of the atomic motion is analyzed with the help of the friction force whose zeroes are attractor or repellor points in the velocity space. We find ranges of the laser parameters where the atomic motion resembles a random but deterministic walking of atoms erratically jumping between different wells of the optical potential. Such a random walking is shown to be fractal.
机译:我们考虑了强驻激光中原子的耗散动力学,并发现了质心运动与内部拉比振荡之间的非线性动力学同步效应。同步在相空间中表现为极限环,极限环可能具有不同的周期和吸引盆。可以在原子的荧光光谱中以等距边带频率检测到这种效应,相邻峰之间的间隔与各个极限循环的周期值成反比。随着激光场强度的增加,我们在数字上观察到分叉的级联,最终最终解决了一个奇怪的混沌吸引子。宽带噪声显示出破坏了分叉场景的精细结构,但期间1和期间3极限周期的突出特征在弱噪声下仍然存在。借助于摩擦力来分析原子运动的特征,该摩擦力的零是速度空间中的吸引点或排斥点。我们找到了激光参数的范围,其中原子运动类似于在光势的不同阱之间不规则地跳跃的原子的随机但确定性的行走。这种随机游走被证明是分形的。

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