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On the spectrum-generating superalgebras of the deformed one-dimensional quantum oscillators

Mathematical Physics 2019-04-10 v2 High Energy Physics - Theory math.MP

Abstract

We investigate the dynamical symmetry superalgebras of the one-dimensional Matrix Superconformal Quantum Mechanics with inverse-square potential. They act as spectrum-generating superalgebras for the systems with the addition of the de Alfaro-Fubini-Furlan oscillator term. The undeformed quantum oscillators are expressed by 2n×2n2^n\times 2^n supermatrices; their corresponding spectrum-generating superalgebras are given by the osp(2n2)osp(2n|2) series. For n=1n=1 the addition of a inverse-square potential does not break the osp(22)osp(2|2) spectrum-generating superalgebra. For n=2n=2 two cases of inverse-square potential deformations arise. The first one produces Klein deformed quantum oscillators; the corresponding spectrum-generating superalgebras are given by the D(2,1;α)D(2,1;\alpha) class, with α\alpha determining the inverse-square potential coupling constants. The second n=2n=2 case corresponds to deformed quantum oscillators of non-Klein type. In this case the osp(42)osp(4|2) spectrum-generating superalgebra of the undeformed theory is broken to osp(22)osp(2|2). The choice of the Hilbert spaces corresponding to the admissible range of the inverse-square potential coupling constants and the possible direct sum of lowest weight representations of the spectrum-generating superalgebras is presented.

Keywords

Cite

@article{arxiv.1812.00873,
  title  = {On the spectrum-generating superalgebras of the deformed one-dimensional quantum oscillators},
  author = {N. Aizawa and I. E. Cunha and Z. Kuznetsova and F. Toppan},
  journal= {arXiv preprint arXiv:1812.00873},
  year   = {2019}
}

Comments

Final version to appear in J. Math. Phys.; three references added