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Phys. Rev. B 46, 9051–9062 (1992)

World-line quantum Monte Carlo algorithm for a one-dimensional Bose model

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Ghassan George Batrouni
Thinking Machines Corporation, 245 First Street, Cambridge, Massachusetts 02142

Richard T. Scalettar
Physics Department, University of California, Davis, California 95616

Received 15 November 1991; published in the issue dated 1 October 1992

In this paper we provide a detailed description of the ground-state phase diagram of interacting, disordered bosons on a lattice. We describe a quantum Monte Carlo algorithm that incorporates in an efficient manner the required bosonic wave-function symmetry. We consider the ordered case, where we evaluate the compressibility gap and show the lowest three Mott insulating lobes. We obtain the critical ratio of interaction strength to hopping at which the onset of superfluidity occurs for the first lobe, and the critical exponents ν and z. For the disordered model we show the effect of randomness on the phase diagram and the superfluid correlations. We also measure the response of the superfluid density, ρs, to external perturbations. This provides an unambiguous characterization of the recently observed Bose and Anderson glass phases.

© 1992 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.46.9051
DOI:
10.1103/PhysRevB.46.9051
PACS:
67.40.Db, 05.70.Jk, 05.30.Jp