Sideband cooling is a popular method for cooling atoms to the ground state of an optical trap. Applying the same method to molecules requires a number of challenges to be overcome. Strong tensor Stark shifts in molecules cause the optical trapping potential, and corresponding trap frequency, to depend strongly on rotational, hyper fine and Zeeman state. Consequently, transition frequencies depend on the motional quantum number and there are additional heating mechanisms, either of which can be fatal for an eff ective sideband cooling scheme. We develop the theory of sideband cooling in state-dependent potentials, and derive an expression for the heating due to photon scattering. We calculate the ac Stark shifts of molecular states in the pr...
State-dependent optical tweezers can be used to trap a pair of molecules with a separation much smal...
A Sisyphean task: Laser cooling of molecules is difficult, mainly due to their rich vibrational stru...
We introduce a scheme for deep laser cooling of molecules based on robust dark states at zero veloci...
Recently, laser cooling methods have been extended from atoms to molecules. The complex rotational a...
We report Raman sideband cooling of a single sodium atom to its three-dimensional motional ground st...
We report cooling of a single neutral atom to its three-dimensional vibrational ground state in an o...
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
We report our experiment on sideband cooling with two Raman transitions in a $\Lambda$ configuration...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
Ultracold molecules can be used for a diverse set of exciting applications including controlled quan...
Laser cooling and magneto-optical trapping of neutral atoms has revolutionized the field of atomic p...
Recent work provides a general two-step solution to trapping and cooling of atoms. The first step is...
We model sympathetic cooling of ground-state CaF molecules by ultracold Li and Rb atoms. The molecul...
Cavity cooling of an atom works best on a cyclic optical transition in the strong coupling regime ne...
Raman cooling of non-zero spin atoms in the presence of gravitational and external magnetic fields i...
State-dependent optical tweezers can be used to trap a pair of molecules with a separation much smal...
A Sisyphean task: Laser cooling of molecules is difficult, mainly due to their rich vibrational stru...
We introduce a scheme for deep laser cooling of molecules based on robust dark states at zero veloci...
Recently, laser cooling methods have been extended from atoms to molecules. The complex rotational a...
We report Raman sideband cooling of a single sodium atom to its three-dimensional motional ground st...
We report cooling of a single neutral atom to its three-dimensional vibrational ground state in an o...
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
We report our experiment on sideband cooling with two Raman transitions in a $\Lambda$ configuration...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
Ultracold molecules can be used for a diverse set of exciting applications including controlled quan...
Laser cooling and magneto-optical trapping of neutral atoms has revolutionized the field of atomic p...
Recent work provides a general two-step solution to trapping and cooling of atoms. The first step is...
We model sympathetic cooling of ground-state CaF molecules by ultracold Li and Rb atoms. The molecul...
Cavity cooling of an atom works best on a cyclic optical transition in the strong coupling regime ne...
Raman cooling of non-zero spin atoms in the presence of gravitational and external magnetic fields i...
State-dependent optical tweezers can be used to trap a pair of molecules with a separation much smal...
A Sisyphean task: Laser cooling of molecules is difficult, mainly due to their rich vibrational stru...
We introduce a scheme for deep laser cooling of molecules based on robust dark states at zero veloci...