Dissipation-Induced Instabilities of a Spinor Bose-Einstein Condensate Inside an Optical Cavity.


Type
Article
Change log
Authors
Chiacchio, EI Rodríguez 
Nunnenkamp, Andreas  ORCID logo  https://orcid.org/0000-0003-2390-7636
Abstract

We investigate the dynamics of a spinor Bose-Einstein condensate inside an optical cavity, driven transversely by a laser with a controllable polarization angle. We focus on a two-component Dicke model with complex light-matter couplings, in the presence of photon losses. We calculate the steady-state phase diagram and find dynamical instabilities in the form of limit cycles, heralded by the presence of exceptional points and level attraction. We show that the instabilities are induced by dissipative processes that generate nonreciprocal couplings between the two collective spins. Our predictions can be readily tested in state-of-the-art experiments and open up the study of nonreciprocal many-body dynamics out of equilibrium.

Description
Keywords
cond-mat.quant-gas, cond-mat.quant-gas, cond-mat.mes-hall, quant-ph
Journal Title
Phys Rev Lett
Conference Name
Journal ISSN
0031-9007
1079-7114
Volume Title
122
Publisher
American Physical Society (APS)
Rights
All rights reserved
Sponsorship
The Royal Society (uf130303)
Engineering and Physical Sciences Research Council (EP/N509620/1)