Ladder Operators and Hidden Algebras for Shape Invariant Nonseparable and Nondiagonalizable Modelswith Quadratic Complex Interaction. I. Two-Dimensional Model
Abstract
A shape invariant nonseparable and nondiagonalizable two-dimensional model with quadratic complex interaction, first studied by Cannata, Ioffe, and Nishnianidze, is re-examined with the purpose of exhibiting its hidden algebraic structure. The two operators and , coming from the shape invariant supersymmetrical approach, where acts as a raising operator while annihilates all wavefunctions, are completed by introducing a novel pair of operators and , where acts as the missing lowering operator. These four operators then serve as building blocks for constructing generators, acting within the set of associated functions belonging to the Jordan block corresponding to a given energy eigenvalue. This analysis is extended to the set of Jordan blocks by constructing two pairs of bosonic operators, finally yielding an algebra, as well as an superalgebra. Hence, the hidden algebraic structure of the model is very similar to that known for the two-dimensional real harmonic oscillator.
Keywords
Cite
@article{arxiv.2010.15273,
title = {Ladder Operators and Hidden Algebras for Shape Invariant Nonseparable and Nondiagonalizable Modelswith Quadratic Complex Interaction. I. Two-Dimensional Model},
author = {Ian Marquette and Christiane Quesne},
journal= {arXiv preprint arXiv:2010.15273},
year = {2022}
}