Scientific article
OA Policy
English

Spin ladders and quantum simulators for Tomonaga–Luttinger liquids

Published inJournal of physics. Condensed matter, vol. 25, no. 1, 014004
Publication date2013
Abstract

Magnetic insulators have proven to be usable as quantum simulators for itinerant interacting quantum systems. In particular the compound (C5H12N)2CuBr4 (for short: (Hpip)2CuBr4) was shown to be a remarkable realization of a Tomonaga–Luttinger liquid (TLL) and allowed us to quantitatively test the TLL theory. Substitution weakly disorders this class of compounds and thus allows us to use them to tackle questions pertaining to the effect of disorder in TLL as well, such as that of the formation of the Bose glass. In this paper we present, as a first step in this direction, a study of the properties of the related (Hpip)2CuCl4 compound. We determine the exchange couplings and compute the temperature and magnetic field dependence of the specific heat, using a finite temperature density matrix renormalization group procedure. Comparison with the measured specific heat at zero magnetic field confirms the exchange parameters and Hamiltonian for the (Hpip)2CuCl4 compound, giving the basis needed to begin studying the disorder effects.

Research groups
Funding
  • Swiss National Science Foundation - Division II
Citation (ISO format)
WARD, S et al. Spin ladders and quantum simulators for Tomonaga–Luttinger liquids. In: Journal of physics. Condensed matter, 2013, vol. 25, n° 1, p. 014004. doi: 10.1088/0953-8984/25/1/014004
Main files (1)
Article (Accepted version)
accessLevelPublic
Identifiers
Journal ISSN0953-8984
699views
734downloads

Technical informations

Creation07/04/2014 14:53:00
First validation07/04/2014 14:53:00
Update14/03/2023 21:06:00
Status update14/03/2023 21:06:00
Last indexation30/10/2024 16:45:16
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack