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量子粒子的加速与减速。

Speed-up and slow-down of a quantum particle.

作者信息

de la Cal X Gutiérrez, Pons M, Sokolovski D

机构信息

Departamento de Química-Física, Universidad del País Vasco, UPV/EHU, Leioa, Spain.

Departamento de Física Aplicada, Universidad del País Vasco, UPV-EHU, Bilbao, Spain.

出版信息

Sci Rep. 2022 Mar 9;12(1):3842. doi: 10.1038/s41598-022-07599-1.

Abstract

We study non-relativistic propagation of Gaussian wave packets in one-dimensional Eckart potential, a barrier, or a well. In the picture used, the transmitted wave packet results from interference between the copies of the freely propagating state with different spatial shifts (delays), [Formula: see text], induced by the scattering potential. The Uncertainty Principle precludes relating the particle's final position to the delay experienced in the potential, except in the classical limit. Beyond this limit, even defining an effective range of the delay is shown to be an impracticable task, owing to the oscillatory nature of the corresponding amplitude distribution. Our examples include the classically allowed case, semiclassical tunnelling, delays induced in the presence of a virtual state, and scattering by a low barrier. The properties of the amplitude distribution of the delays, and its pole representation are studied in detail.

摘要

我们研究高斯波包在一维埃卡特势、势垒或势阱中的非相对论传播。在所采用的图景中,透射波包是由散射势引起的具有不同空间位移(延迟)([公式:见正文])的自由传播态的副本之间的干涉产生的。除了在经典极限情况下,不确定性原理排除了将粒子的最终位置与在势中经历的延迟联系起来。超出这个极限,由于相应振幅分布的振荡性质,甚至定义延迟的有效范围也被证明是一项不切实际的任务。我们的例子包括经典允许情况、半经典隧穿、在虚态存在时引起的延迟以及低势垒散射。详细研究了延迟的振幅分布的性质及其极点表示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f0f/8907271/105084323212/41598_2022_7599_Fig1_HTML.jpg

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