Phys. Rev. E 60, 3992–3999 (1999)Classical diffusion and quantum level velocities: Systematic deviations from random matrix theorySee Also: Erratum Received 10 May 1999; published in the issue dated October 1999 We study the response of the quasienergy levels in the context of quantized chaotic systems through the level velocity variance and relate them to classical diffusion coefficients using detailed semiclassical analysis. The systematic deviations from random matrix theory, assuming independence of eigenvectors from eigenvalues, are shown to be connected to classical higher-order time correlations of the chaotic system. We study the standard map as a specific example, and thus the well-known oscillatory behavior of the diffusion coefficient with respect to the parameter is reflected exactly in the oscillations of the variance of the level velocities. We study the case of mixed phase-space dynamics as well and note a transition in the scaling properties of the variance that occurs along with the classical transition to chaos. © 1999 The American Physical Society URL:
http://link.aps.org/doi/10.1103/PhysRevE.60.3992
DOI:
10.1103/PhysRevE.60.3992
PACS:
05.45.-a, 03.65.Sq, 05.45.Mt
See AlsoErratum: Arul Lakshminarayan, Nicholas R. Cerruti, and Steven Tomsovic, Erratum: Classical diffusion and quantum level velocities: Systematic deviations from random matrix theory [Phys. Rev. E 60, 3992 (1999)], Phys. Rev. E 61, 6031 (2000). |
