We calculate the parameters of the recently derived many-channel Hubbard model that is predicted to describe ultracold nonreactive molecules in an optical lattice, going beyond the approximations used by Doçaj et al. [A. Doçaj et al., Phys. Rev. Lett. 116, 135301 (2016)]. Although those approximations are expected to capture the qualitative structure of the model parameters, finer details and quantitative values are less certain. To set expectations for experiments, whose results depend on the model parameters, we describe the approximations' regime of validity and the likelihood that experiments will be in this regime, discuss the impact that the failure of these approximations would have on the predicted model, and develop theories going ...
We propose an easy to use model to solve for interacting atoms in an optical lattice. This model all...
We use Ramsey spectroscopy to experimentally probe the quantum dynamics of disordered dipolar-intera...
The study of ultracold molecules tightly trapped in an optical lattice can expand the frontier of pr...
We calculate the parameters of the recently derived many-channel Hubbard model that is predicted to ...
We derive effective lattice models for ultracold bosonic or fermionic nonreactive molecules (NRMs) i...
We derive effective lattice models for ultracold bosonic or fermionic nonreactive molecules (NRMs) i...
Recent experimental advances in the cooling and manipulation of bialkali-metal dimer molecules have ...
Recent experimental advances in the cooling and manipulation of bialkali-metal dimer molecules have ...
We calculate near-threshold bound states and Feshbach resonance positions for atom–rigid-rotor model...
We investigate the use of programmable optical lattices for quantum simulation of Hubbard models, de...
ii Ultracold atoms have revolutionized the eld of quantum many-body physics due to excellent underst...
Most experiments with ultracold atoms in optical lattices have contactinteractions, and therefore op...
This thesis describes experiments focused on investigating out-of-equilibrium phenomena in the Bose-...
An outstanding problem in physics is how to understand strongly interacting quantum many-body system...
Abelian and non-Abelian gauge theories are of central importance in many areas of physics. In conde...
We propose an easy to use model to solve for interacting atoms in an optical lattice. This model all...
We use Ramsey spectroscopy to experimentally probe the quantum dynamics of disordered dipolar-intera...
The study of ultracold molecules tightly trapped in an optical lattice can expand the frontier of pr...
We calculate the parameters of the recently derived many-channel Hubbard model that is predicted to ...
We derive effective lattice models for ultracold bosonic or fermionic nonreactive molecules (NRMs) i...
We derive effective lattice models for ultracold bosonic or fermionic nonreactive molecules (NRMs) i...
Recent experimental advances in the cooling and manipulation of bialkali-metal dimer molecules have ...
Recent experimental advances in the cooling and manipulation of bialkali-metal dimer molecules have ...
We calculate near-threshold bound states and Feshbach resonance positions for atom–rigid-rotor model...
We investigate the use of programmable optical lattices for quantum simulation of Hubbard models, de...
ii Ultracold atoms have revolutionized the eld of quantum many-body physics due to excellent underst...
Most experiments with ultracold atoms in optical lattices have contactinteractions, and therefore op...
This thesis describes experiments focused on investigating out-of-equilibrium phenomena in the Bose-...
An outstanding problem in physics is how to understand strongly interacting quantum many-body system...
Abelian and non-Abelian gauge theories are of central importance in many areas of physics. In conde...
We propose an easy to use model to solve for interacting atoms in an optical lattice. This model all...
We use Ramsey spectroscopy to experimentally probe the quantum dynamics of disordered dipolar-intera...
The study of ultracold molecules tightly trapped in an optical lattice can expand the frontier of pr...