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首页> 外文期刊>Journal of Modern Optics >Wave packets in a sieve: quantum control at the edge of strong chaos
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Wave packets in a sieve: quantum control at the edge of strong chaos

机译:筛子中的波包:强混沌边缘的量子控制

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We consider the quantum dynamics of the kicked rotor model in the regime where the last stable resonance islands in the classical phase space disappear. It is found that phase space regions with lower local diffusion rates are able to preserve quantum population. The low-diffusion regions can be moved through phase space in a quasi-adiabatic way by smoothly varying the parameters of the kicking field. With appropriately chosen time-scales for the variation of the field parameters, wave packets initially localized around the low-diffusion areas remain localized around these regions as the regions are moved. The wave packets can then be carried to desired regions of space despite the predominantly chaotic character of the classical phase space. We also comment on the Gong-Brumer scenario of coherent control of quantum chaotic diffusion [Phys. Rev. Lett. 86 1741 (2001)]. While our phase-space inspired control has a clear semiclassical interpretation, it appears that the Gong-Brumer control has a predominantly quantum origin. Furthermore, it is found that our control over wave packet localization disappears in the deeply chaotic regime, while the Gong-Brumer control over the chaotic diffusion persists in this regime but becomes increasingly unstable with increasing chaoticity.
机译:我们考虑在经典相空间中最后一个稳定的共振岛消失的状态下,反冲转子模型的量子动力学。发现具有较低局部扩散率的相空间区域能够保留量子种群。可以通过平滑地改变反冲场的参数,以准绝热的方式使低扩散区域在相空间中移动。通过适当选择的时标来改变场参数,当区域移动时,最初位于低扩散区域周围的波包将保持在这些区域周围。尽管经典相空间主要具有混沌特性,但波包然后可以被携带到空间的期望区域。我们还评论了量子混沌扩散相干控制的Gong-Brumer场景[Phys。莱特牧师86 1741(2001)。尽管我们的相空间启发控制具有清晰的半经典解释,但看来Gong-Brumer控制具有主要的量子起源。此外,发现在深层混沌状态下,我们对波包局部化的控制消失了,而在这种状态下,龚-布鲁默对混沌扩散的控制仍然存在,但随着混乱度的增加而变得越来越不稳定。

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