Dietz B, Friedrich T, Harney H L, Miski-Oglu M, Richter A, Schäfer F, Weidenmüller H A
Institut für Kernphysik, Technische Universität Darmstadt, D-64289 Darmstadt, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Mar;81(3 Pt 2):036205. doi: 10.1103/PhysRevE.81.036205. Epub 2010 Mar 5.
In a frequency range where a microwave resonator simulates a chaotic quantum billiard, we have measured moduli and phases of reflection and transmission amplitudes in the regimes of both isolated and of weakly overlapping resonances and for resonators with and without time-reversal invariance. Statistical measures for S -matrix fluctuations were determined from the data and compared with extant and/or newly derived theoretical results obtained from the random-matrix approach to quantum chaotic scattering. The latter contained a small number of fit parameters. The large data sets taken made it possible to test the theoretical expressions with unprecedented accuracy. The theory is confirmed by both a goodness-of-fit-test and the agreement of predicted values for those statistical measures that were not used for the fits, with the data.
在一个微波谐振器模拟混沌量子台球的频率范围内,我们测量了孤立共振和弱重叠共振两种情况下,以及具有和不具有时间反演不变性的谐振器的反射和透射振幅的模量和相位。根据这些数据确定了S矩阵涨落的统计量,并与从量子混沌散射的随机矩阵方法获得的现有和/或新推导的理论结果进行了比较。后者包含少量拟合参数。所获取的大量数据集使得能够以前所未有的精度检验理论表达式。通过拟合优度检验以及未用于拟合的那些统计量的预测值与数据的一致性,证实了该理论。