4.4 Article

A self-bound matter-wave boson-fermion quantum ball

Journal

LASER PHYSICS LETTERS
Volume 15, Issue 9, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1612-202X/aacb0a

Keywords

Bose-Einstein condensate; superfluid fermion; soliton

Funding

  1. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo FAPESP (Brazil) [2012/00451-0, 2016/01343-7]
  2. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (Brazil) [303280/2014-0]

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We demonstrate the possibility of creating a self-bound stable three-dimensional matter-wave spherical boson-fermion quantum ball in the presence of an attractive boson-fermion interaction and a small repulsive three-boson interaction. The two-boson interaction could be attractive or repulsive whereas the fermions are taken to be in a fully-paired super-fluid state in the Bardeen-Cooper-Schreifer (quasi-noninteracting weak-coupling) limit. We also include the Lee-Huang-Yang (LHY) correction to a repulsive bosonic interaction term. The repulsive three-boson interaction and the LHY correction can stop a global collapse while acting jointly or separately. The present study is based on a mean-field model, where the bosons are subject to a Gross-Pitaevskii (GP) Lagrangian functional and the fully-paired fermions are described by a Galilean-invariant density functional Lagrangian. The boson-fermion interaction is taken to be the mean-field Hartree interaction, quite similar to the interaction term in the GP equation. The study is illustrated by a variational and a numerical solution of the mean-field model for the boson-fermion Li-7-Li-6 system.

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