Exploring quantum quasicrystal patterns: a variational study

Fuente: arXiv
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Autori principali: Mendoza-Coto, A., Turcati, R., Zampronio, V., Díaz-Méndez, R., Macrì, T., Cinti, F.
Natura: Preprint
Pubblicazione: 2021
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author Mendoza-Coto, A.
Turcati, R.
Zampronio, V.
Díaz-Méndez, R.
Macrì, T.
Cinti, F.
author_facet Mendoza-Coto, A.
Turcati, R.
Zampronio, V.
Díaz-Méndez, R.
Macrì, T.
Cinti, F.
contents We study the emergence of quasicrystal configurations produced purely by quantum fluctuations in the ground-state phase diagram of interacting bosonic systems. By using a variational mean-field approach, we determine the relevant features of the pair interaction potential that stabilize such quasicrystalline states in two dimensions. Unlike their classical counterpart, in which the interplay between only two wave vectors determines the resulting symmetries of the solutions, the quantum picture relates in a more complex way to the instabilities of the excitation spectrum. Moreover, the quantum quasicrystal patterns are found to emerge as the ground state with no need of moderate thermal fluctuations. The study extends to the exploration of the excitation properties and the possible existence of super-quasicrystals, i.e. supersolid-like quasicrystalline states in which the long-range non-periodic density profile coexist with a non-zero superfluid fraction. Our calculations show that, in an intermediate region between the homogeneous superfluid and the normal quasicrystal phases, these exotic states indeed exist at zero temperature. Comparison with full numerical simulations provides a solid verification of the variational approach adopted in this work.
format Preprint
id arxiv_https___arxiv_org_abs_2110_12299
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Exploring quantum quasicrystal patterns: a variational study
Mendoza-Coto, A.
Turcati, R.
Zampronio, V.
Díaz-Méndez, R.
Macrì, T.
Cinti, F.
Quantum Gases
Mesoscale and Nanoscale Physics
Soft Condensed Matter
We study the emergence of quasicrystal configurations produced purely by quantum fluctuations in the ground-state phase diagram of interacting bosonic systems. By using a variational mean-field approach, we determine the relevant features of the pair interaction potential that stabilize such quasicrystalline states in two dimensions. Unlike their classical counterpart, in which the interplay between only two wave vectors determines the resulting symmetries of the solutions, the quantum picture relates in a more complex way to the instabilities of the excitation spectrum. Moreover, the quantum quasicrystal patterns are found to emerge as the ground state with no need of moderate thermal fluctuations. The study extends to the exploration of the excitation properties and the possible existence of super-quasicrystals, i.e. supersolid-like quasicrystalline states in which the long-range non-periodic density profile coexist with a non-zero superfluid fraction. Our calculations show that, in an intermediate region between the homogeneous superfluid and the normal quasicrystal phases, these exotic states indeed exist at zero temperature. Comparison with full numerical simulations provides a solid verification of the variational approach adopted in this work.
title Exploring quantum quasicrystal patterns: a variational study
topic Quantum Gases
Mesoscale and Nanoscale Physics
Soft Condensed Matter
url https://arxiv.org/abs/2110.12299