Quantum Phase Transition in the Sub-Ohmic Spin-Boson Model: Extended Coherent-state Approach
Quantum Gases
2015-05-14 v2 Statistical Mechanics
Abstract
We propose a general extended coherent state approach to the qubit (or fermion) and multi-mode boson coupling systems. The application to the spin-boson model with the discretization of a bosonic bath with arbitrary continuous spectral density is described in detail, and very accurate solutions can be obtained. The quantum phase transition in the nontrivial sub-Ohmic case can be located by the fidelity and the order-parameter critical exponents for the bath exponents can be correctly given by the fidelity susceptibility, demonstrating the strength of the approach.
Keywords
Cite
@article{arxiv.0912.1991,
title = {Quantum Phase Transition in the Sub-Ohmic Spin-Boson Model: Extended Coherent-state Approach},
author = {Yu-Yu Zhang and Qing-Hu Chen and Ke-Lin Wang},
journal= {arXiv preprint arXiv:0912.1991},
year = {2015}
}
Comments
4 pages, 3 figures