Ultracold polar molecules possess long-range, anisotropic and tunable dipolar interactions, providing opportunities to probe quantum phenomena that are inaccessible with existing cold gas platforms. However, experimental progress has been hindered by the dominance of two-body loss over elastic interactions, which prevents efficient evaporative cooling. Although recent work has demonstrated controlled interactions by confining molecules to a two-dimensional geometry, a general approach for tuning molecular interactions in a three-dimensional stable system has been lacking. Here we demonstrate tunable elastic dipolar interactions in a bulk gas of ultracold 40K87Rb molecules in three dimensions, facilitated by an electric field-induced shieldi...
Strongly interacting spins underlie many intriguing phenomena and applications ranging from magnetis...
This thesis contains a study of ultracold paramagnetic atoms or polar molecules characterized by a l...
Ultracold molecules are expected to find applications in cold chemistry, quantum phases, precision m...
The preparation of ultracold polar molecular gases close to quantum degeneracy opens novel research ...
Ultracold polar molecules offer strong electric dipole moments and rich internal structure, which ma...
Stable ultracold ensembles of dipolar molecules hold great promise for many-body quantum physics, bu...
Reaching high densities is a key step toward cold-collision experiments with polyatomic molecules. W...
For more than 20 years, major advances have been made in the formation, cooling and trapping of dipo...
Full control of molecular interactions, including reactive losses, would open new frontiers in quant...
International audienceThe dipolar collision between ultracold polar molecules is an important topic ...
Remarkable progress in the field of experimental quantum physics has enabled the preparation of quan...
We study a bulk fermionic dipolar molecular gas in the quantum degenerate regime confined in a two-d...
We propose a one-channel, simple model to describe the dynamics of ultracold dipolar molecules aroun...
Ultracold polar molecules, because of their long-range, spatially anisotropic interactions, are a ne...
Polar molecules are an ideal platform for studying quantum information and quantum simulation due to...
Strongly interacting spins underlie many intriguing phenomena and applications ranging from magnetis...
This thesis contains a study of ultracold paramagnetic atoms or polar molecules characterized by a l...
Ultracold molecules are expected to find applications in cold chemistry, quantum phases, precision m...
The preparation of ultracold polar molecular gases close to quantum degeneracy opens novel research ...
Ultracold polar molecules offer strong electric dipole moments and rich internal structure, which ma...
Stable ultracold ensembles of dipolar molecules hold great promise for many-body quantum physics, bu...
Reaching high densities is a key step toward cold-collision experiments with polyatomic molecules. W...
For more than 20 years, major advances have been made in the formation, cooling and trapping of dipo...
Full control of molecular interactions, including reactive losses, would open new frontiers in quant...
International audienceThe dipolar collision between ultracold polar molecules is an important topic ...
Remarkable progress in the field of experimental quantum physics has enabled the preparation of quan...
We study a bulk fermionic dipolar molecular gas in the quantum degenerate regime confined in a two-d...
We propose a one-channel, simple model to describe the dynamics of ultracold dipolar molecules aroun...
Ultracold polar molecules, because of their long-range, spatially anisotropic interactions, are a ne...
Polar molecules are an ideal platform for studying quantum information and quantum simulation due to...
Strongly interacting spins underlie many intriguing phenomena and applications ranging from magnetis...
This thesis contains a study of ultracold paramagnetic atoms or polar molecules characterized by a l...
Ultracold molecules are expected to find applications in cold chemistry, quantum phases, precision m...