Numerical Renormalization Group for Quantum Impurities in a Bosonic Bath
Abstract
We present a detailed description of the recently proposed numerical renormalization group method for models of quantum impurities coupled to a bosonic bath. Specifically, the method is applied to the spin-boson model, both in the Ohmic and sub-Ohmic cases. We present various results for static as well as dynamic quantities and discuss details of the numerical implementation, e.g., the discretization of a bosonic bath with arbitrary continuous spectral density, the suitable choice of a finite basis in the bosonic Hilbert space, and questions of convergence w.r.t. truncation parameters. The method is shown to provide high-accuracy data over the whole range of model parameters and temperatures, which are in agreement with exact results and other numerical data from the literature.
Cite
@article{arxiv.cond-mat/0407559,
title = {Numerical Renormalization Group for Quantum Impurities in a Bosonic Bath},
author = {Ralf Bulla and Hyun-Jung Lee and Ning-Hua Tong and Matthias Vojta},
journal= {arXiv preprint arXiv:cond-mat/0407559},
year = {2009}
}
Comments
23 pages, 21 figures; three references and one figure added