Adiabatic evolution of 1D shape resonances: an artificial interface conditions approach
Analysis of PDEs
2010-06-01 v4 Spectral Theory
Quantum Physics
Abstract
Artificial interface conditions parametrized by a complex number are introduced for 1D-Schr\"odinger operators. When this complex parameter equals the parameter of the complex deformation which unveils the shape resonances, the Hamiltonian becomes dissipative. This makes possible an adiabatic theory for the time evolution of resonant states for arbitrarily large time scales. The effect of the artificial interface conditions on the important stationary quantities involved in quantum transport models is also checked to be as small as wanted, in the polynomial scale as , according to .
Cite
@article{arxiv.1001.3665,
title = {Adiabatic evolution of 1D shape resonances: an artificial interface conditions approach},
author = {Ali Faraj and Andrea Mantile and Francis Nier},
journal= {arXiv preprint arXiv:1001.3665},
year = {2010}
}
Comments
60 pages, 13 figures