arXiv Analytics

Sign in

arXiv:1002.3051 [math-ph]AbstractReferencesReviewsResources

Inner products of resonance solutions in 1-D quantum barriers

J. Julve, F. J. de Urries

Published 2010-02-16Version 1

The properties of a prescription for the inner products of the resonance (Gamow states), scattering (Dirac kets), and bound states for 1-dimensional quantum barriers are worked out. The divergent asypmtotic behaviour of the Gamow states is regularized using a Gaussian convergence factor first introduced by Zel'dovich. With this prescription, most of these states (with discrete complex energies) are found to be orthogonal to each other, to the bound states, and to the Dirac kets, except when they are neighbors, in which case the inner product is divergent. Therefore, as it happens for the continuum scattering states, the norm of the resonant ones remains non-calculable. Thus, they exhibit properties half way between the (continuum real) Dirac-delta orthogonality and the (discrete real) Kronecker-delta orthogonality of the bound states.

Related articles: Most relevant | Search more
arXiv:math-ph/0402022 (Published 2004-02-10)
Lower limit in semiclassical form for the number of bound states in a central potential
arXiv:1704.07844 [math-ph] (Published 2017-04-25)
Influence of the bound states in the Neumann Laplacian in a thin waveguide
arXiv:1803.02679 [math-ph] (Published 2018-03-07)
Inner Product of Irreducible Finite-dimensional Representations of Classical Groups