We used microwave radiation to evaporatively cool a mixture of of Cs-133 and Rb-87 atoms in a magnetic trap. A mixture composed of an equal number (around 10(4)) of Rb and Cs atoms in their doubly polarized states at ultracold temperatures was prepared. We also used microwaves to selectively evaporate atoms in different Zeeman states. (c) 2005 Elsevier B.V. All rights reserved
Abstract. We present a theoretical analysis of the evaporative cooling of a magnetically guided atom...
We discuss how the observation of Rabi flopping oscillations in a laser cooled atomic sample could b...
textGeneral control of atoms and molecules has long been a goal for atomic physicists and physical c...
We used microwave radiation to evaporatively cool a mixture of of 133Cs and 87Rb atoms in a magneti...
This works reports on using laser cooling and evaporative cooling to create an ultra-cold mixture of...
We present a new tool for Bose-Einstein condensation using evaporative cooling of magnetically trapp...
Radio-frequency evaporation of atoms in a magnetic trap is the only way to obtain Bose-Einstein Cond...
This thesis describes a new apparatus designed to study cold, ultracold, and quantum degenerate mixt...
We report on measurements of the collisional properties of a mixture of Cs-133 and Rb-87 atoms in a ...
We present a model for the collisional properties of a mixture of Cs-133 and Rb-87 atoms in a magnet...
Trapping particles is a key starting point for a range of physics experiments. The ability to confin...
This thesis describes a new apparatus designed to study cold, ultracold, and quantum degenerate mixt...
We have evaporatively cooled caesium atoms in a magnetic trap to temperatures as low as 8 nK and pro...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
We measure the ac Zeeman force on an ultracold gas of 87Rb due to a microwave magnetic field targete...
Abstract. We present a theoretical analysis of the evaporative cooling of a magnetically guided atom...
We discuss how the observation of Rabi flopping oscillations in a laser cooled atomic sample could b...
textGeneral control of atoms and molecules has long been a goal for atomic physicists and physical c...
We used microwave radiation to evaporatively cool a mixture of of 133Cs and 87Rb atoms in a magneti...
This works reports on using laser cooling and evaporative cooling to create an ultra-cold mixture of...
We present a new tool for Bose-Einstein condensation using evaporative cooling of magnetically trapp...
Radio-frequency evaporation of atoms in a magnetic trap is the only way to obtain Bose-Einstein Cond...
This thesis describes a new apparatus designed to study cold, ultracold, and quantum degenerate mixt...
We report on measurements of the collisional properties of a mixture of Cs-133 and Rb-87 atoms in a ...
We present a model for the collisional properties of a mixture of Cs-133 and Rb-87 atoms in a magnet...
Trapping particles is a key starting point for a range of physics experiments. The ability to confin...
This thesis describes a new apparatus designed to study cold, ultracold, and quantum degenerate mixt...
We have evaporatively cooled caesium atoms in a magnetic trap to temperatures as low as 8 nK and pro...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
We measure the ac Zeeman force on an ultracold gas of 87Rb due to a microwave magnetic field targete...
Abstract. We present a theoretical analysis of the evaporative cooling of a magnetically guided atom...
We discuss how the observation of Rabi flopping oscillations in a laser cooled atomic sample could b...
textGeneral control of atoms and molecules has long been a goal for atomic physicists and physical c...