Functionally independent conservations laws in a quantum integrable model

Fuente: arXiv
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Autores principales: Owusu, Haile, Shastry, B. Sriram
Formato: Preprint
Publicado: 2013
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author Owusu, Haile
Shastry, B. Sriram
author_facet Owusu, Haile
Shastry, B. Sriram
contents We study a recently proposed quantum integrable model defined on a lattice with N sites, with Fermions or Bosons populating each site, as a close relative of the well known spin-1/2 Gaudin model. This model has 2N arbitrary parameters, a linear dependence on an interaction type parameter x, and can be solved exactly. It has N known constants of motion that are linear in x. We display further constants of motion with higher Fermion content, that are are linearly independent of the known conservation laws. Our main result is that despite the existence of these higher conservation laws, the model has only N functionally independent conservation laws. Therefore we propose that N can be viewed as the number of degrees of freedom, in parallel to the classical definition of integrability.
format Preprint
id arxiv_https___arxiv_org_abs_1303_3526
institution arXiv
publishDate 2013
record_format arxiv
spellingShingle Functionally independent conservations laws in a quantum integrable model
Owusu, Haile
Shastry, B. Sriram
Strongly Correlated Electrons
Mathematical Physics
Quantum Physics
We study a recently proposed quantum integrable model defined on a lattice with N sites, with Fermions or Bosons populating each site, as a close relative of the well known spin-1/2 Gaudin model. This model has 2N arbitrary parameters, a linear dependence on an interaction type parameter x, and can be solved exactly. It has N known constants of motion that are linear in x. We display further constants of motion with higher Fermion content, that are are linearly independent of the known conservation laws. Our main result is that despite the existence of these higher conservation laws, the model has only N functionally independent conservation laws. Therefore we propose that N can be viewed as the number of degrees of freedom, in parallel to the classical definition of integrability.
title Functionally independent conservations laws in a quantum integrable model
topic Strongly Correlated Electrons
Mathematical Physics
Quantum Physics
url https://arxiv.org/abs/1303.3526