Título
Enhanced tunneling through nonstationary barriers
11627/379311627/3793
Autor
Palomares Báez, Juan Pedro
Ivlev, Boris
Rodríguez López, José Luis
Resumen
"Quantum tunneling through a nonstationary barrier is studied analytically and by a direct numerical solution of Schrödinger equation. Both methods are in agreement and say that the main features of the phenomenon can be described in terms of classical trajectories which are solutions of Newton’s equation in complex time. The probability of tunneling is governed by analytical properties of a time-dependent perturbation and the classical trajectory in the plane of complex time. Some preliminary numerical calculations of Euclidean resonance (an easy penetration through a classical nonstationary barrier due to an underbarrier interference) are presented."
Fecha de publicación
2007-11Tipo de publicación
articleDOI
https://doi.org/10.1103/PhysRevA.76.052103Área de conocimiento
ÓPTICAEditor
American Physical SocietyPalabras clave
TimeApproximation
Field
Decay
Wave