Semiclassical Theory of Short Periodic Orbits in Quantum Chaos

Abstract

We have developed a semiclassical theory of short periodic orbits to obtain all quantum information of a bounded chaotic Hamiltonian system. If T1 is the period of the shortest periodic orbit, T2 the period of the next one and so on, the number Np.o. of periodic orbits required in the calculation is such that T1+...+TNp.o is approximately TH, with TH the Heisenberg time. As a result Np.o h TH/ (h TH), where h is the topological entropy. For methods related to the trace formula Np.o (h TH)/ (h TH).

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