A conjugate for the Bargmann representation
Quantum Physics
2009-03-10 v1
Abstract
In the Bargmann representation of quantum mechanics, physical states are mapped into entire functions of a complex variable z*, whereas the creation and annihilation operators and play the role of multiplication and differentiation with respect to z*, respectively. In this paper we propose an alternative representation of quantum states, conjugate to the Bargmann representation, where the roles of and are reversed, much like the roles of the position and momentum operators in their respective representations. We derive expressions for the inner product that maintain the usual notion of distance between states in the Hilbert space. Applications to simple systems and to the calculation of semiclassical propagators are presented.
Cite
@article{arxiv.0809.1759,
title = {A conjugate for the Bargmann representation},
author = {A. D. Ribeiro and F. Parisio and M. A. M. de Aguiar},
journal= {arXiv preprint arXiv:0809.1759},
year = {2009}
}
Comments
15 pages