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首页> 外文期刊>Physics Reports: A Review Section of Physics Letters (Section C) >Tunneling time, the Hartman effect, and superluminality: A proposed resolution of an old paradox
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Tunneling time, the Hartman effect, and superluminality: A proposed resolution of an old paradox

机译:隧道时间,哈特曼效应和超光度:拟议的解决旧矛盾的方法

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The issue of tunneling time is replete with controversy and paradoxes. The controversy stems from the fact that many tunneling time definitions seem to predict superluminal tunneling velocities. One prediction, termed the Hartman effect, states that the tunneling time becomes independent of barrier length for thick enough barriers, ultimately resulting in unbounded tunneling velocities. Experiments done with "single photons", classical light waves, and microwaves all show this apparent superluminality. The origin of these paradoxical effects has been a mystery for decades. In this article, we review the history of tunneling times starting with the early work of MacColl, Hartman, and Wigner. We discuss some of the tunneling time definitions, with particular emphasis on the phase time (also known as the group delay or Wigner time) and the dwell time. The key experiments are reviewed. We then discuss our recent work, which suggests that the group delay in tunneling is not a transit time as has been assumed for decades. It is, in reality, a lifetime and hence should not be used to assign a speed of barrier traversal. We show how this new understanding along with the concept of energy storage and release resolves all the outstanding tunneling time paradoxes. (c) 2006 Elsevier B.V. All rights reserved.
机译:隧道时间的问题充满争议和悖论。争议源于许多隧穿时间定义似乎预示了超腔隧道速度的事实。一种称为哈特曼效应的预测指出,对于足够厚的势垒,隧穿时间变得与势垒长度无关,最终导致无界的隧穿速度。用“单光子”,经典光波和微波进行的实验都显示出这种明显的超光度。这些矛盾效应的起源几十年来一直是个谜。在本文中,我们将从MacColl,Hartman和Wigner的早期工作开始回顾隧道时间的历史。我们讨论了一些隧穿时间定义,特别着重于相位时间(也称为群延迟或维格纳时间)和驻留时间。审查了关键实验。然后,我们讨论我们最近的工作,这表明隧道中的群延迟不是几十年来所假设的渡越时间。实际上,它是生命周期,因此不应用于指定势垒穿越的速度。我们将展示这种新的理解以及能量存储和释放的概念如何解决所有突出的隧道时间悖论。 (c)2006 Elsevier B.V.保留所有权利。

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