English

From self-adjoint to non self-adjoint harmonic oscillators: physical consequences and mathematical pitfalls

Mathematical Physics 2015-06-17 v1 math.MP

Abstract

Using as a prototype example the harmonic oscillator we show how losing self-adjointness of the hamiltonian HH changes drastically the related functional structure. In particular, we show that even a small deviation from strict self-adjointness of HH produces two deep consequences, not well understood in the literature: first of all, the original orthonormal basis of HH splits into two families of biorthogonal vectors. These two families are complete but, contrarily to what often claimed for similar systems, none of them is a basis for the Hilbert space \Hil\Hil. Secondly, the so-called metric operator is unbounded, as well as its inverse. In the second part of the paper, after an extension of some previous results on the so-called \D\D pseudo-bosons, we discuss some aspects of our extended harmonic oscillator from this different point of view.

Keywords

Cite

@article{arxiv.1309.5065,
  title  = {From self-adjoint to non self-adjoint harmonic oscillators: physical consequences and mathematical pitfalls},
  author = {Fabio Bagarello},
  journal= {arXiv preprint arXiv:1309.5065},
  year   = {2015}
}

Comments

in press in Physical Review A

R2 v1 2026-06-22T01:30:30.692Z