We have revealed that the barrier-tunneling process in nonintegrable systems is strongly linked to chaos in complex phase space by investigating a simple scattering map model. The semiclassical wave function reproduces complicated features of tunneling perfectly and it enables us to solve all the reasons why those features appear in spite of absence of chaos on the real plane. Multigeneration structure of manifolds, which is the manifestation of complex-domain homoclinic entanglement created by complexified classical dynamics, allows a symbolic coding and it is used as a guiding principle to extract dominant complex trajectories from all the semiclassical candidates
For generic non-integrable systems we show that a semiclassical prediction of tunnelling rates betwe...
34 pagesWe present a comprehensive theory of resonance-assisted tunneling in quantum systems that ex...
We consider the tunneling of a wave packet through a potential barrier which is coupled to a noninte...
We investigate the semiclassical mechanism of tunneling processes in nonintegrable systems. The sign...
Multidimensionality of systems significantly affects on tunneling phenomena observed. In particular,...
Tunneling is a fundamental effect of quantum mechanics, which allows waves to penetrate into regions...
The fully complex domain semiclassical theory based upon the complexified stable-unstable manifold t...
We develop the semiclassical method of complex trajectories in application to chaotic dynamical tunn...
The fringed tunnelling, which can be observed in strongly coupled 1.5-dimensional barrier systems as...
A divergent movement exhibited by singularities of complexified classical trajectories plays an impo...
Dynamical tunnelling between symmetry-related stable modes is studied in the periodically driven pen...
abstract: What can classical chaos do to quantum systems is a fundamental issue highly relevant to a...
Tunneling is one of the most prominent features of quantum mechanics. While the tunneling process in...
Semiclassical theory based upon complexified classical mechanics is developed for periodically time-...
"Several aspects of microlocal analysis". October 20~24, 2014. edited by Naofumi Honda, Yasunori Oka...
For generic non-integrable systems we show that a semiclassical prediction of tunnelling rates betwe...
34 pagesWe present a comprehensive theory of resonance-assisted tunneling in quantum systems that ex...
We consider the tunneling of a wave packet through a potential barrier which is coupled to a noninte...
We investigate the semiclassical mechanism of tunneling processes in nonintegrable systems. The sign...
Multidimensionality of systems significantly affects on tunneling phenomena observed. In particular,...
Tunneling is a fundamental effect of quantum mechanics, which allows waves to penetrate into regions...
The fully complex domain semiclassical theory based upon the complexified stable-unstable manifold t...
We develop the semiclassical method of complex trajectories in application to chaotic dynamical tunn...
The fringed tunnelling, which can be observed in strongly coupled 1.5-dimensional barrier systems as...
A divergent movement exhibited by singularities of complexified classical trajectories plays an impo...
Dynamical tunnelling between symmetry-related stable modes is studied in the periodically driven pen...
abstract: What can classical chaos do to quantum systems is a fundamental issue highly relevant to a...
Tunneling is one of the most prominent features of quantum mechanics. While the tunneling process in...
Semiclassical theory based upon complexified classical mechanics is developed for periodically time-...
"Several aspects of microlocal analysis". October 20~24, 2014. edited by Naofumi Honda, Yasunori Oka...
For generic non-integrable systems we show that a semiclassical prediction of tunnelling rates betwe...
34 pagesWe present a comprehensive theory of resonance-assisted tunneling in quantum systems that ex...
We consider the tunneling of a wave packet through a potential barrier which is coupled to a noninte...