From weakly to strongly-interacting driven-dissipative bosons in one dimension
Martina Zündel, Loïc Herviou, Léonie Canet, Anna Minguzzi
Abstract
We consider a one-dimensional driven-dissipative Bose-Hubbard model subjected to incoherent pump and one- and two-body losses, and analyze it by studying its two-point space-time correlations. By employing a combination of numerical methods, such as stochastic semi-classical simulations and tensor network methods, as well as perturbation theory within the Keldysh formalism, we characterize the system at varying filling and interaction strength. We present results for two complementary regimes: i) at large filling and weak interactions, where we show that Kardar-Parisi-Zhang scaling is visible in the linewidth of the spectral function and ii) at weak filling and strong interactions, where we analyze what remains of the mean field transition and identify a change of nature of the excitations. Our study covers two important regions of the phase diagram of such a system.
Create a lesson
Related papers
The heavy Fermi polaron I: the Lithium-Cesium experiment
Michael Rautenberg, Tobias Krom, Eleonora Lippi et al.
Crossing the Rotational Sound Barrier in a Quantum Solvent
Baptiste Coquinot, Giacomo Bighin, Mikhail Lemeshko et al.
Vortex lattices in coupled one-dimensional Bose-Einstein condensates with a synthetic magnetic field
Holly A. J. Middleton-Spencer, Rose Davies, David G. Reid et al.
Emptiness formation in the Lieb-Liniger gas: hydrodynamic instantons and a conjectured rate function
Boris A. Khanikati, Alexander G. Abanov
Exact analytical spectrum, eigenstates, and quantum geometry of the quarter-flux Harper-Hofstadter model
Isaac Tesfaye, André Eckardt
Mass-anisotropy driven stripe pattern formation and directional modulational instability in polariton condensate
Hari Sadhan Ghosh, Soumyadeep Halder, Subrata Das et al.