A unified theory of strong coupling Bose polarons: From repulsive polarons to non-Gaussian many-body bound states
arXiv:2305.00835 · doi:10.1103/7vdd-8vb4
Abstract
We address the Bose polaron problem of a mobile impurity interacting strongly with a host Bose-Einstein condensate (BEC) through a Feshbach resonance. On the repulsive side at strong couplings, theoretical approaches predict two distinct polaron branches corresponding to attractive and repulsive polarons, but it remains unclear how the two are related. This is partly due to the challenges resulting from a competition of strongly attractive (destabilizing) impurity-boson interactions with weakly repulsive (stabilizing) boson-boson interactions, whose interplay is difficult to describe with contemporary theoretical methods. Here we develop a powerful variational framework that combines Gaussian correlations among impurity-boson scattering states, including up to an infinite number of bosonic excitations, with exact non-Gaussian correlations among bosons occupying an impurity-boson bound state. This variational scheme enables a full treatment of strong nonlinearities arising in the Feshbach molecule on the repulsive side of the resonance. Within this framework, we demonstrate that the interplay of impurity-induced instability and stabilization by repulsive boson-boson interactions results in a discrete set of metastable many-body bound states at intermediate energies between the attractive and repulsive polaron branches. These states exhibit strong quantum statistical characteristics in the form of non-Gaussian quantum correlations, requiring non-perturbative beyond mean-field treatments for their characterization. Furthermore, these many-body bound states have sizable molecular spectral weights, accessible via molecular spectroscopy techniques. This work provides a unified theory of attractive and repulsive Bose polarons on the repulsive side of the Feshbach resonance.
References in corpus (25)
- Observation of Fermi Polarons in a Tunable Fermi Liquid of Ultracold Atoms
- Attractive and repulsive Fermi polarons in two dimensions
- Fermi-Polaron: Diagrammatic Monte Carlo for Divergent Sign-Alternating Series
- Repulsive Fermi polarons in a resonant mixture of ultracold Li atoms
- Variational study of polarons in Bose-Einstein condensates
- Non-equilibrium quantum dynamics and formation of the Bose polaron
- Thermal diffusivity and chaos in metals without quasiparticles
- Polaron-molecule transitions in a two-dimensional Fermi gas
- Bipolaronic high-temperature superconductivity
- Mobile impurity in a Bose-Einstein condensate and the orthogonality catastrophe
- Strong pairing in mixed dimensional bilayer antiferromagnetic Mott insulators
- Universal aspects of a strongly interacting impurity in a dilute Bose condensate
- Fate of the Bose polaron at finite temperature
- Quantum behavior of a heavy impurity strongly coupled to a Bose gas
- Excitation spectra of quantum matter without quasiparticles I: Sachdev-Ye-Kitaev models
- Many-body bound states and induced interactions of charged impurities in a bosonic bath
- From Efimov Physics to the Bose Polaron using Gaussian States
- Quench Dynamics of the Ideal Bose Polaron at Zero and Nonzero Temperatures
- Hole in the 2D Ising Antiferromagnet: Origin of the Incoherent Spectrum
- Excitation spectra of quantum matter without quasiparticles II: random - models
- Chemistry of a light impurity in a Bose-Einstein condensate
- Rotational Resonances and Regge Trajectories in Lightly Doped Antiferromagnets
- Particle zoo in a doped spin chain: Correlated states of mesons and magnons
- Universal quantum dynamics of Bose polarons
- Quasiparticle metamorphosis in the random t-J model