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arxiv: 1003.3303 · v2 · submitted 2010-03-17 · 🪐 quant-ph · cond-mat.mes-hall

Quantum anomalies and linear response theory

classification 🪐 quant-ph cond-mat.mes-hall
keywords epsilonchaoticdrivenenergyleadsquantizedquantumanalysis
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The analysis of diffusive energy spreading in quantized chaotic driven systems, leads to a universal paradigm for the emergence of a quantum anomaly. In the classical approximation a driven chaotic system exhibits stochastic-like diffusion in energy space with a coefficient $D$ that is proportional to the intensity $\epsilon^2$ of the driving. In the corresponding quantized problem the coherent transitions are characterized by a generalized Wigner time $t_{\epsilon}$, and a self-generated (intrinsic) dephasing process leads to non-linear dependence of $D$ on $\epsilon^2$.

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