Staggered superfluid phases of dipolar bosons in two-dimensional square lattices

Kuldeep Suthar, Rebecca Kraus, Hrushikesh Sable, Dilip Angom, Giovanna Morigi, and Jakub Zakrzewski
Phys. Rev. B 102, 214503 – Published 7 December 2020

Abstract

We study the quantum ground state of ultracold bosons in a two-dimensional square lattice. The bosons interact via the repulsive dipolar interactions and s-wave scattering. The dynamics is described by the extended Bose-Hubbard model including correlated hopping due to the dipolar interactions, and the coefficients are found from the second quantized Hamiltonian using the Wannier expansion with realistic parameters. We determine the phase diagram using the Gutzwiller ansatz in the regime where the coefficients of the correlated hopping terms are negative and can interfere with the tunneling due to single-particle effects. We show that this interference gives rise to staggered superfluid and supersolid phases at vanishing kinetic energy, while we identify parameter regions at finite kinetic energy where the phases are incompressible. We compare the results with the phase diagram obtained with the cluster Gutzwiller approach and with the results found in one dimension using the density-matrix renormalization group.

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  • Received 6 August 2020
  • Revised 19 October 2020
  • Accepted 17 November 2020

DOI:https://doi.org/10.1103/PhysRevB.102.214503

©2020 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied PhysicsAtomic, Molecular & Optical

Authors & Affiliations

Kuldeep Suthar1, Rebecca Kraus2, Hrushikesh Sable3,4, Dilip Angom3, Giovanna Morigi2, and Jakub Zakrzewski1,5

  • 1Institute of Theoretical Physics, Jagiellonian University in Kraków, Łojasiewicza 11, 30-348 Kraków, Poland
  • 2Theoretical Physics, Saarland University, Campus E2.6, D-66123 Saarbrücken, Germany
  • 3Physical Research Laboratory, Ahmedabad - 380009, Gujarat, India
  • 4Indian Institute of Technology Gandhinagar, Palaj, Gandhinagar - 382355, Gujarat, India
  • 5Mark Kac Complex Systems Research Center, Jagiellonian University in Krakow, Łojasiewicza 11, 30-348 Kraków, Poland

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Issue

Vol. 102, Iss. 21 — 1 December 2020

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