Perturbation-free prediction of resonance-assisted tunneling in mixed regular-chaotic systems.

Mertig, Normann; Kullig, Julius; Löbner, Clemens; Bäcker, Arnd; Ketzmerick, Roland · Phys Rev E · 2016

basic_science · Level V

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Abstract

For generic Hamiltonian systems we derive predictions for dynamical tunneling from regular to chaotic phase-space regions. In contrast to previous approaches, we account for the resonance-assisted enhancement of regular-to-chaotic tunneling in a nonperturbative way. This provides the foundation for future semiclassical complex-path evaluations of resonance-assisted regular-to-chaotic tunneling. Our approach is based on a new class of integrable approximations which mimic the regular phase-space region and its dominant nonlinear resonance chain in a mixed regular-chaotic system. We illustrate the method for the standard map.