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Role of Bose Statistics in Crystallization and Quantum Jamming

2012/03/31 by M. Boninsegni, L. Pollet, N. Prokof'ev +1
Physics and Astronomy · #cond-mat.stat-mech

paper · pdf · doi:10.1103/physrevlett.109.025302

published as Phys. Rev. Lett. 109, 025302 (2012)

arxiv created 2012/07/09 · arxiv updated 2012/07/11

Abstract

Indistinguishability of particles is a major factor destabilizing crystalline order in Bose systems. We describe this effect in terms of damped quasi-particle modes and in the dual language of Feynman paths, and illustrate it by first-principle simulations of dipolar bosons and bulk condensed helium-four. The first major implication is that, contrary to conventional wisdom, zero-point motion alone cannot prevent helium-four crystallization at low temperature, at saturated vapour pressure. Secondly, Bose statistics leads to quantum jamming at finite temperature, dramatically enhancing the metastability of superfluid glasses. Only studies of indistinguishable particles can reliably address these issues.

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