Quantum Brownian Motion on a Triangular Lattice and Fermi-Bose Equivalence: An Application of Boundary State Formulation
High Energy Physics - Theory
2015-09-02 v1 Strongly Correlated Electrons
Abstract
We discuss the Bose-Fermi equivalence in the quantum Brownian motion (QBM) on a triangular lattice, mapping the action for the QBM into a string theory action with a periodic boundary tachyon potential. We construct new Klein factors which are more appropriate than the conventional ones to deal with the quantum field theories defined on a two dimensioanl space-time with boundaries. Using the Fermi-Bose equivalence with the new Klein factors, we show that the model for the quantum Bownian motion on a triangular lattice is equivalent to the Thirring model with boundary terms, which are quadratic in fermion field operators, in the off-critical regions and to a free fermion theory with quadratic boundary terms at the critical point.
Keywords
Cite
@article{arxiv.1508.01649,
title = {Quantum Brownian Motion on a Triangular Lattice and Fermi-Bose Equivalence: An Application of Boundary State Formulation},
author = {Taejin Lee},
journal= {arXiv preprint arXiv:1508.01649},
year = {2015}
}
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11 pages