Gutkin Boris, Waltner Daniel, Gutiérrez Martha, Kuipers Jack, Richter Klaus
Fachbereich Physik, Universität Duisburg-Essen, Lotharstrasse 1, D-47048 Duisburg, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Mar;81(3 Pt 2):036222. doi: 10.1103/PhysRevE.81.036222. Epub 2010 Mar 30.
By considering correlations between classical orbits we derive semiclassical expressions for the decay of the quantum fidelity amplitude for classically chaotic quantum systems, as well as for its squared modulus, the fidelity or Loschmidt echo. Our semiclassical results for the fidelity amplitude agree with random matrix theory (RMT) and supersymmetry predictions in the universal Fermi-golden rule regime. The calculated quantum corrections can be viewed as arising from a static random perturbation acting on nearly self-retracing interfering paths, and hence will be suppressed for time-varying perturbations. Moreover, using trajectory-based methods we show a relation, recently obtained in RMT, between the fidelity amplitude and the cross-form factor for parametric level correlations. Beyond RMT, we compute Ehrenfest-time effects on the fidelity amplitude. Furthermore our semiclassical approach allows for a unified treatment of the fidelity, both in the Fermi-golden rule and Lyapunov regimes, demonstrating that quantum corrections are suppressed in the latter.
通过考虑经典轨道之间的相关性,我们推导出了经典混沌量子系统的量子保真度振幅衰减及其平方模(即保真度或洛施密特回波)的半经典表达式。我们关于保真度振幅的半经典结果与随机矩阵理论(RMT)以及在通用费米黄金规则 regime 中的超对称预测一致。计算得到的量子修正可以被视为源于作用在近乎自回溯干涉路径上的静态随机微扰,因此对于随时间变化的微扰将被抑制。此外,使用基于轨迹的方法,我们展示了最近在随机矩阵理论中得到的保真度振幅与参数化能级相关性的交叉形状因子之间的关系。超越随机矩阵理论,我们计算了埃伦费斯特时间对保真度振幅的影响。此外,我们的半经典方法允许在费米黄金规则和李雅普诺夫 regime 中对保真度进行统一处理,表明在后者中量子修正被抑制。