Dutta Rina, Shukla Pragya
Department of Physics, Indian Institute of Technology, Kharagpur, India.
Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Sep;78(3 Pt 1):031115. doi: 10.1103/PhysRevE.78.031115. Epub 2008 Sep 10.
We investigate the possibility of an Anderson-type transition in the quantum kicked rotor with a smooth potential due to dynamical localization of the wave functions. Our results show the typical characteristics of a critical behavior, i.e., multifractal eigenfunctions and a scale-invariant level statistics at a critical kicking strength which classically corresponds to a mixed regime. This indicates the existence of a localization to delocalization transition in the quantum kicked rotor. Our study also reveals the possibility of other types of transition in the quantum kicked rotor, with a kicking strength well within the strongly chaotic regime. These transitions, driven by the breaking of exact symmetries, e.g., time reversal and parity, are similar to weak-localization transitions in disordered metals.
我们研究了由于波函数的动力学局域化,在具有平滑势的量子受驱转子中出现安德森型转变的可能性。我们的结果显示了临界行为的典型特征,即在临界驱动强度下的多重分形本征函数和尺度不变的能级统计,这在经典情况下对应于混合区域。这表明在量子受驱转子中存在从局域化到非局域化的转变。我们的研究还揭示了在量子受驱转子中,在强混沌区域内驱动强度下发生其他类型转变的可能性。这些由精确对称性(如时间反演和平移对称性)破缺驱动的转变,类似于无序金属中的弱局域化转变。