Calogero, spherically reduced and PT-deformed

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

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  • Universidad Austral de Chile
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Details

OriginalspracheEnglisch
Aufsatznummer095
FachzeitschriftProceedings of Science
Jahrgang292
PublikationsstatusVeröffentlicht - 2016
VeranstaltungCorfu Summer Institute 2016 "School and Workshops on Elementary Particle Physics and Gravity", CORFU 2016 - Corfu, Griechenland
Dauer: 31 Aug. 201612 Sept. 2016

Abstract

The rational Calogero model based on the An-1 root system is spherically reduced to a superintegrable angular model of a particle moving on Sn-2 subject to a very particular potential singular at the Weyl chamber walls. We review the computation of its energy spectrum (including the eigenstates), conserved charges and intertwining operators shifting the coupling constant by one. These models are deformed in a PT -symmetric manner by judicious complex coordinate transformations, which render the potential less singular. The PT deformation does not change the energy levels but in some cases adds a previously unphysical tower of states. For integral couplings this roughly doubles the previous degeneracy and allows for a conserved nonlinear supersymmetry-type charge. We illustrate the general constructions by presenting the details for the cases of A2 and A3 and point out open questions.

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Zitieren

Calogero, spherically reduced and PT-deformed. / Correa, Francisco; Lechtenfeld, Olaf.
in: Proceedings of Science, Jahrgang 292, 095, 2016.

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Correa, F & Lechtenfeld, O 2016, 'Calogero, spherically reduced and PT-deformed', Proceedings of Science, Jg. 292, 095.
Correa, F., & Lechtenfeld, O. (2016). Calogero, spherically reduced and PT-deformed. Proceedings of Science, 292, Artikel 095.
Correa F, Lechtenfeld O. Calogero, spherically reduced and PT-deformed. Proceedings of Science. 2016;292:095.
Correa, Francisco ; Lechtenfeld, Olaf. / Calogero, spherically reduced and PT-deformed. in: Proceedings of Science. 2016 ; Jahrgang 292.
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