The loop algorithm
Top Cited Papers
- 1 January 2003
- journal article
- research article
- Published by Taylor & Francis in Advances in Physics
- Vol. 52 (1) , 1-66
- https://doi.org/10.1080/0001873021000049195
Abstract
A review of the loop algorithm , its generalizations, and its relation to some other Monte Carlo techniques is given. The loop algorithm is a quantum Monte Carlo procedure that employs non-local changes of worldline configurations, determined by local stochastic decisions. It is based on a formulation of quantum models of any dimension in an extended ensemble of worldlines and graphs, and is related to Swendsen-Wang algorithms. It can be represented directly on an operator level, both with a continuous imaginary time path integral and with the stochastic series expansion. It overcomes many of the difficulties of traditional worldline simulations. Autocorrelations are reduced by orders of magnitude. Grand-canonical ensembles, off-diagonal operators, and variance reduced estimators are accessible. In some cases, infinite systems can be simulated. For a restricted class of models, the fermion sign problem can be overcome. Transverse magnetic fields are handled efficiently, in contrast to strong diagonal fields. The method has been applied successfully to a variety of models for spin and charge degrees of freedom, including Heisenberg and XYZ spin models, hard-core bosons, Hubbard and t - J -models. Owing to the improved efficiency, precise calculations of asymptotic behaviour and of quantum critical exponents have been possible.Keywords
All Related Versions
This publication has 177 references indexed in Scilit:
- From spin ladders to the 2D O(3) model at non-zero densityComputer Physics Communications, 2002
- Anisotropic scaling and generalized conformal invariance at Lifshitz pointsComputer Physics Communications, 2002
- Critical behavior of a chiral condensate with a meron cluster algorithmPhysics Letters B, 2000
- On the evaluation of the specific heat and general off-diagonal n-point correlation functions within the loop algorithmZeitschrift für Physik B Condensed Matter, 2000
- Quantum magnetism in the stripe phase: Bond versus site orderPhysical Review B, 1999
- A determination of the low energy parameters of the 2-d Heisenberg antiferromagnetZeitschrift für Physik B Condensed Matter, 1994
- Vectorized search for single clustersJournal of Statistical Physics, 1993
- A vectorized algorithm for cluster formation in the Swendsen-Wang dynamicsComputer Physics Communications, 1991
- Comparison between cluster Monte Carlo algorithms in the Ising modelPhysics Letters B, 1989
- Monte Carlo simulations of one-dimensional fermion systemsPhysical Review B, 1982