6 papers
Hong-Ou-Mandel atom interferometry in tunnel-coupled optical tweezers
A. M. Kaufman, B. J. Lester, C. M. Reynolds +5
The quantum statistics of atoms is typically observed in the behavior of an ensemble via macroscopic observables. However, quantum statistics modifies the behavior of even two part…
Simulating quantum magnets with symmetric top molecules
Michael L Wall, Kenji Maeda, Lincoln D Carr
We establish a correspondence between the electric dipole matrix elements of a polyatomic symmetric top molecule in a state with nonzero projection of the total angular momentum on…
The Molecular Hubbard Hamiltonian: Field Regimes and Molecular Species
M. L. Wall, Erman Bekaroglu, Lincoln D. Carr
The molecular Hubbard Hamiltonian (MHH) naturally arises for ultracold ground state polar alkali dimer molecules in optical lattices. We show that, unlike ultracold atoms, differen…
Strongly interacting fermions in an optical lattice
M. L. Wall, L. D. Carr
We analyze a system of two-component fermions which interact via a Feshbach resonance in the presence of a three-dimensional lattice potential. By expressing a two-channel model of…
Microscopic model for Feshbach interacting fermions in an optical lattice with arbitrary scattering length and resonance width
M. L. Wall, L. D. Carr
We numerically study the problem of two fermions in a three dimensional optical lattice interacting via a zero-range Feshbach resonance, and display the dispersions of the bound st…
The ALPS project release 2.0: Open source software for strongly correlated systems
B. Bauer, L. D. Carr, H. G. Evertz +29
We present release 2.0 of the ALPS (Algorithms and Libraries for Physics Simulations) project, an open source software project to develop libraries and application programs for the…