paper

Universal trimers with p-wave interactions and the faux-Efimov effect

arXiv:2408.08993 · doi:10.1088/1361-6455/ad987b

Abstract

An unusual class of -wave universal trimers with symmetry is identified, for both a two-component fermionic trimer with - and -wave scattering length close to unitarity and for a one-component fermionic trimer at -wave unitarity. Moreover, fermionic trimers made of atoms with two internal spin components are found for , when the -wave interaction between spin-up and spin-down fermions is close to unitarity and/or when the interaction between two spin-up fermions is close to the -wave unitary limit. The universality of these -wave universal trimers is tested here by considering van der Waals interactions in a Lennard-Jones potential with different numbers of two-body bound states; our calculations also determine the value of the scattering volume or length where the trimer state hits zero energy and can be observed as a recombination resonance. The faux-Efimov effect appears with trimer symmetry when the two fermion interactions are close to -wave unitarity and the lowest coefficient gets modified, thereby altering the usual Wigner threshold law for inelastic processes involving 3-body continuum channels.

15 pages, 16 figures