We present the results of computer simulations at low temperature of a two-dimensional system of dipolar bosons, with dipole moments aligned at an arbitrary angle with respect to the direction perpendicular to the plane. The phase diagram includes a homogeneous superfluid phase, as well as triangular and striped crystalline phases, as the particle density and the tilt angle are varied. In the striped solid, no phase coherence among stripes and consequently no “supersolid” phase are found, in disagreement with recent theoretical predictions.

Absence of Superfluidity in 2D Dipolar Bose Striped Crystals / Cinti F.; Boninsegni M.. - In: JOURNAL OF LOW TEMPERATURE PHYSICS. - ISSN 0022-2291. - ELETTRONICO. - 196:(2019), pp. 413-422. [10.1007/s10909-019-02209-3]

Absence of Superfluidity in 2D Dipolar Bose Striped Crystals

Cinti F.;
2019

Abstract

We present the results of computer simulations at low temperature of a two-dimensional system of dipolar bosons, with dipole moments aligned at an arbitrary angle with respect to the direction perpendicular to the plane. The phase diagram includes a homogeneous superfluid phase, as well as triangular and striped crystalline phases, as the particle density and the tilt angle are varied. In the striped solid, no phase coherence among stripes and consequently no “supersolid” phase are found, in disagreement with recent theoretical predictions.
2019
196
413
422
Cinti F.; Boninsegni M.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1179375
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