Suppression of Three-Body Loss Near a p-Wave Resonance Due to Quasi-1D Confinement
arXiv:2007.15783
Abstract
We investigate the three-body recombination rate of a Fermi gas of Li atoms confined in quasi-1D near a -wave Feshbach resonance. We confirm that the quasi-1D loss rate constant follows the predicted threshold scaling law that is energy independent on resonance, and find consistency with the scaling law far from resonance [Mehta et al. Phys. Rev. A 76, 022711 (2007)]. Further we develop a theory based on Breit-Wigner analysis that describes the loss feature for intermediate fields. Lastly we measure how the loss rate constant scales with transverse confinement and find that , where is the lattice depth. Importantly, at our attainable transverse confinements and temperatures, we see a 74-fold suppression of the on-resonant three-body loss rate constant in quasi-1D compared to 3D. With significant further enhancement of the transverse confinement, this suppression may pave the way for realizing stable -wave superfluids.
6 pages, 5 figures