Fiete Gregory A
Department of Physics, University of Texas at Austin, Austin, TX 78712, USA.
J Phys Condens Matter. 2009 May 13;21(19):193201. doi: 10.1088/0953-8984/21/19/193201. Epub 2009 Apr 7.
When a local potential changes abruptly in time, an electron gas responds by shifting to a new state which at long times is orthogonal to the one in the absence of the local potential. This is known as Anderson's orthogonality catastrophe and it is relevant for the so-called x-ray edge or Fermi-edge singularity, and for tunneling into an interacting one-dimensional system of fermions. It often happens that the finite frequency response of the photon absorption or the tunneling density of states exhibits a singular behavior as a function of frequency: [Formula: see text], where ω(th) is a threshold frequency and α is an exponent characterizing the singular response. In this review singular responses of spin-incoherent Luttinger liquids are reviewed. Such responses most often do not fall into the familiar form above, but instead typically exhibit logarithmic corrections and display a much higher universality in terms of the microscopic interactions in the theory. Specific predictions are made, the current experimental situation is summarized and key outstanding theoretical issues related to spin-incoherent Luttinger liquids are highlighted.
当一个局域势随时间急剧变化时,电子气会通过转变到一个新状态做出响应,在长时间情况下,这个新状态与不存在局域势时的状态正交。这被称为安德森正交性灾难,它与所谓的X射线边或费米边奇点以及隧穿到相互作用的一维费米子系统有关。经常会出现光子吸收的有限频率响应或隧穿态密度作为频率的函数呈现奇异行为:[公式:见原文],其中ω(th)是一个阈值频率,α是表征奇异响应的指数。在这篇综述中,对自旋非相干卢廷格液体的奇异响应进行了综述。这类响应大多并不属于上述常见形式,而是通常表现出对数修正,并且在理论中的微观相互作用方面显示出更高的普适性。文中给出了具体预测,总结了当前的实验情况,并突出了与自旋非相干卢廷格液体相关的关键未解决理论问题。