Hubbard physics with ultracold polar molecules: on-site interaction energies for shielded molecules
Carlin Stewart-Wiese, Joy Dutta, Jeremy M. Hutson
Abstract
We explore on-site interaction energies U for pairs of shielded ultracold molecules on the same lattice site. We use 2-dimensional effective potentials appropriate for microwave shielding, which have dipole-dipole character at long range but feature a very large repulsive core when the two molecules come close together. This causes very strong correlation between the motions of two molecules on the same site. We find behavior very different from that for ultracold atoms: in particular, there are states for which U is negative for weak lattices but crosses zero to positive values as the lattice strength increases. This behavior is found for both unbound pairs and 2-body bound states. The latter will give access to previously unexplored types of strongly dipolar Hubbard physics with multiple site occupancy.
Create a lesson
Related papers
The heavy Fermi polaron I: the Lithium-Cesium experiment
Michael Rautenberg, Tobias Krom, Eleonora Lippi et al.
Crossing the Rotational Sound Barrier in a Quantum Solvent
Baptiste Coquinot, Giacomo Bighin, Mikhail Lemeshko et al.
Vortex lattices in coupled one-dimensional Bose-Einstein condensates with a synthetic magnetic field
Holly A. J. Middleton-Spencer, Rose Davies, David G. Reid et al.
Emptiness formation in the Lieb-Liniger gas: hydrodynamic instantons and a conjectured rate function
Boris A. Khanikati, Alexander G. Abanov
Exact analytical spectrum, eigenstates, and quantum geometry of the quarter-flux Harper-Hofstadter model
Isaac Tesfaye, André Eckardt
Mass-anisotropy driven stripe pattern formation and directional modulational instability in polariton condensate
Hari Sadhan Ghosh, Soumyadeep Halder, Subrata Das et al.