4.8 Article

Strongly Interacting Bosons in a Two-Dimensional Quasicrystal Lattice

期刊

PHYSICAL REVIEW LETTERS
卷 126, 期 11, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.126.110401

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  1. Paris region DIM-SIRTEQ
  2. GENCI-CINES [2019-A0070510300]

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The study reveals a superfluid-to-Bose glass transition in two-dimensional correlated bosons under an eightfold quasicrystal potential, and shows that strong interactions stabilize Mott insulator phases with broken eightfold symmetry.
Quasicrystals exhibit exotic properties inherited from the self-similarity of their long-range ordered, yet aperiodic, structure. The recent realization of optical quasicrystal lattices paves the way to the study of correlated Bose fluids in such structures, but the regime of strong interactions remains largely unexplored, both theoretically and experimentally. Here, we determine the quantum phase diagram of two-dimensional correlated bosons in an eightfold quasicrystal potential. Using large-scale quantum Monte Carlo calculations, we demonstrate a superfluid-to-Bose glass transition and determine the critical line. Moreover, we show that strong interactions stabilize Mott insulator phases, some of which have spontaneously broken eightfold symmetry. Our results are directly relevant to current generation experiments and, in particular, drive prospects to the observation of the still elusive Bose glass phase in two dimensions and exotic Mott phases.

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