Complex contact interaction for systems with short-range two-body loss
arXiv:2109.11284 · doi:10.1103/PhysRevLett.129.203401
Abstract
Contact interaction is a fundamental concept that appears in various areas of physics. It simplifies physical models by replacing the detailed short-range interaction with a zero-range contact potential which reproduces the same low-energy scattering parameter, i.e. the -wave scattering length. In this work, we generalize this concept to a system with short-range two-body loss. We show that the short-range two-body loss can effectively be replaced by a zero-range complex contact potential with proper regularization characterized by a complex scattering length. We develop appropriate ways to regularize this potential in the Lindblad master equation and apply them to the dynamic problem of Bose-Einstein condensate with weak interaction and two-body loss.
6 pages, 1 figure
References in corpus (12)
- Dissipation induced Tonks-Girardeau gas in an optical lattice
- Feshbach resonances in ultracold atomic and molecular collisions: threshold behaviour and suppression of poles in scattering lengths
- Lieb-Liniger model of a dissipation-induced Tonks-Girardeau gas
- The effect of atom losses on the distribution of rapidities in the one-dimensional Bose gas
- Strong correlations in lossy one-dimensional quantum gases: from the quantum Zeno effect to the generalized Gibbs ensemble
- Breakdown of Tan's relation in lossy one-dimensional Bose gases
- Lindblad Equation for the Inelastic Loss of Ultracold Atoms
- The one-dimensional Bose gas with strong two-body losses: the effect of the harmonic confinement
- SU(1,1) echoes for breathers in quantum gases
- Efimov states embedded in the three-body continuum
- Effective scattering and Efimov physics in the presence of two-body dissipation
- Losses in interacting quantum gases: ultra-violet divergence and its regularization
Cited by in corpus (9)
- Universality and two-body losses: lessons from the effective non-Hermitian dynamics of two particles
- Efimov physics in the complex plane
- Weakly interacting Bose gas with two-body losses
- Dissipative Superfluidity in a Molecular Bose-Einstein Condensate
- Local Non-Hermitian Hamiltonian Formalism for Dissipative Fermionic Systems and Loss-Induced Population Increase in Fermi Superfluids
- Fate of thermalization of ultracold fermions with two-body dissipation
- Dissipation Driven Coherent Dynamics Observed in Bose-Einstein Condensates
- Fragmentation Temperature of 1D and 3D Quantum Droplets in a BEC Mixture
- Phenomenological model of decaying Bose polarons