The ability to cool atoms below the Doppler limit -- the minimum temperature reachable by Doppler cooling -- has been essential to most experiments with quantum degenerate gases, optical lattices and atomic fountains, among many other applications. A broad set of new applications await ultracold molecules, and the extension of laser cooling to molecules has begun. A molecular magneto-optical trap has been demonstrated, where molecules approached the Doppler limit. However, the sub-Doppler temperatures required for most applications have not yet been reached. Here we cool molecules to 50 uK, well below the Doppler limit, using a three-dimensional optical molasses. These ultracold molecules could be loaded into optical tweezers to trap arbitr...
We introduce a scheme for deep laser cooling of molecules based on robust dark states at zero veloci...
Cryogenic buffer gas cooled beams and cells can be used to study many species, from atoms and polar ...
We study theoretically the behavior of laser-cooled calcium monofluoride (CaF) molecules in an optic...
From studies of fundamental physics to quantum technologies the production of ultracold molecules wi...
Laser cooling and trapping in a magneto-optical trap (MOT) have been essential to the success of col...
Ultracold molecules are ideal platforms for many important applications, ranging from quantum simula...
Many areas of physics—precision measurements, quantum information, and physical chemistry, to name a...
Many areas of physics—precision measurements, quantum information, and physical chemistry, to name a...
Laser slowing of CaF molecules down to the capture velocity of a magneto-optical trap for molecules ...
Diatomic molecules are considered good candidates for the study of strongly correlated systems and p...
Recently, laser cooling methods have been extended from atoms to molecules. The complex rotational a...
Laser slowing of CaF molecules down to the capture velocity of a magneto-optical trap for molecules ...
A Sisyphean task: Laser cooling of molecules is difficult, mainly due to their rich vibrational stru...
Laser slowing of CaF molecules down to the capture velocity of a magneto-optical trap for molecules ...
Ultracold molecules can be used for a diverse set of exciting applications including controlled quan...
We introduce a scheme for deep laser cooling of molecules based on robust dark states at zero veloci...
Cryogenic buffer gas cooled beams and cells can be used to study many species, from atoms and polar ...
We study theoretically the behavior of laser-cooled calcium monofluoride (CaF) molecules in an optic...
From studies of fundamental physics to quantum technologies the production of ultracold molecules wi...
Laser cooling and trapping in a magneto-optical trap (MOT) have been essential to the success of col...
Ultracold molecules are ideal platforms for many important applications, ranging from quantum simula...
Many areas of physics—precision measurements, quantum information, and physical chemistry, to name a...
Many areas of physics—precision measurements, quantum information, and physical chemistry, to name a...
Laser slowing of CaF molecules down to the capture velocity of a magneto-optical trap for molecules ...
Diatomic molecules are considered good candidates for the study of strongly correlated systems and p...
Recently, laser cooling methods have been extended from atoms to molecules. The complex rotational a...
Laser slowing of CaF molecules down to the capture velocity of a magneto-optical trap for molecules ...
A Sisyphean task: Laser cooling of molecules is difficult, mainly due to their rich vibrational stru...
Laser slowing of CaF molecules down to the capture velocity of a magneto-optical trap for molecules ...
Ultracold molecules can be used for a diverse set of exciting applications including controlled quan...
We introduce a scheme for deep laser cooling of molecules based on robust dark states at zero veloci...
Cryogenic buffer gas cooled beams and cells can be used to study many species, from atoms and polar ...
We study theoretically the behavior of laser-cooled calcium monofluoride (CaF) molecules in an optic...