Self-induced Bose glass phase in quantum cluster quasicrystals

Fuente: arXiv
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Main Authors: Grossklags, Matheus, Ciardi, Matteo, Zampronio, Vinicius, Cinti, Fabio, Mendoza-Coto, Alejandro
Format: Preprint
Published: 2023
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author Grossklags, Matheus
Ciardi, Matteo
Zampronio, Vinicius
Cinti, Fabio
Mendoza-Coto, Alejandro
author_facet Grossklags, Matheus
Ciardi, Matteo
Zampronio, Vinicius
Cinti, Fabio
Mendoza-Coto, Alejandro
contents We study the emergence of Bose glass phases in self sustained bosonic quasicrystals induced by a pair interaction between particles of Lifshitz-Petrich type. By using a mean field variational method designed in momentum space as well as Gross-Pitaevskii simulations we determine the phase diagram of the model. The study of the local and global superfluid fraction allows the identification of supersolid, super quasicrystal, Bose glass and insulating phases. The Bose glass phase emerges as a quasicrystal phase in which the global superfluidity is essentially zero, while the local superfluidity remains finite in certain ring structures of the quasicrystalline pattern. Furthermore, we perform continuous space Path Integral Monte Carlo simulations for a case in which the interaction between particles stabilizes a quasicrystal phase. Our results show that as the strength of the interaction between particles is increased the system undergoes a sequence of states consistent with the super quasicrystal, Bose glass, and quasicrystal insulator thermodynamic phases.
format Preprint
id arxiv_https___arxiv_org_abs_2308_12434
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Self-induced Bose glass phase in quantum cluster quasicrystals
Grossklags, Matheus
Ciardi, Matteo
Zampronio, Vinicius
Cinti, Fabio
Mendoza-Coto, Alejandro
Quantum Gases
Mesoscale and Nanoscale Physics
Soft Condensed Matter
We study the emergence of Bose glass phases in self sustained bosonic quasicrystals induced by a pair interaction between particles of Lifshitz-Petrich type. By using a mean field variational method designed in momentum space as well as Gross-Pitaevskii simulations we determine the phase diagram of the model. The study of the local and global superfluid fraction allows the identification of supersolid, super quasicrystal, Bose glass and insulating phases. The Bose glass phase emerges as a quasicrystal phase in which the global superfluidity is essentially zero, while the local superfluidity remains finite in certain ring structures of the quasicrystalline pattern. Furthermore, we perform continuous space Path Integral Monte Carlo simulations for a case in which the interaction between particles stabilizes a quasicrystal phase. Our results show that as the strength of the interaction between particles is increased the system undergoes a sequence of states consistent with the super quasicrystal, Bose glass, and quasicrystal insulator thermodynamic phases.
title Self-induced Bose glass phase in quantum cluster quasicrystals
topic Quantum Gases
Mesoscale and Nanoscale Physics
Soft Condensed Matter
url https://arxiv.org/abs/2308.12434