Universal spectrum of isolated three-body resonances
arXiv:2406.11372 · doi:10.1103/dg1j-txk4
Abstract
The exact wavefunction of an isolated three-body resonance at finite scattering length is obtained for two identical particles interacting with another one via a pairwise zero-range potential. The corresponding universal spectrum is studied as a function of the scattering length. The universality of the results is illustrated by considering a model with finite-range interactions.
19 pages, 11 figures
References in corpus (11)
- Three-boson problem near a narrow Feshbach resonance
- Low-energy three-body dynamics in binary quantum gases
- Analytical solution of the bosonic three-body problem
- Universal Fermi Gas with Two- and Three-Body Resonances
- Crossover trimers connecting continuous and discrete scaling regimes
- Unnuclear physics
- Reshaped Three-Body Interactions and the Observation of an Efimov State in the Continuum
- Fate of Multiparticle Resonances: From -Balls to He Droplets
- Universal trimers with p-wave interactions and the faux-Efimov effect
- Universality of isolated -body resonances at large scattering length
- General features and contact modeling of -body isolated resonances near threshold