Trapping particles is a key starting point for a range of physics experiments. The ability to confine, manipulate and interrogate a trapped species enables an invaluable degree of control and precision. Each trap offers different advantages and possibilities, and emerging experiments often demand different methods of trapping. This thesis describes a new three-dimensional microwave trap for atoms and molecules. Like an optical dipole trap, it can trap ground state polar molecules, but its depth and volume are larger by factors of 10^3 and 10^9 respectively. The experiment consists of a lithium oven, Zeeman slower, magneto-optical trap (MOT), a moving magnetic trap, and a high-quality Fabry-Perot cavity which serves as the microwave trap...
The aim of our experiment is to explore two methods of creating an ultracold dipolar gas which can s...
This thesis describes atomic physics experiments performed using a microfabricated photonic waveguid...
We describe a dynamic magneto-optical trap (MOT) suitable for the use with vacuum systems in which o...
We demonstrate a trap that confines polarizable particles around the antinode of a standing-wave mic...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
We duscuss a resonant microwave trap for neutral atoms. Because of the long spontaneous radiation ti...
Arrays of cold atoms in magnetic traps have been implemented for use in quantum simulation, metrolog...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, February 2007.Includes bib...
Laser cooling and trapping in a magneto-optical trap (MOT) have been essential to the success of col...
Cold polar molecules provide unique opportunities to test fundamental physics and chemistry. Their p...
There is great interest in the use of ultracold polar molecules confined in op- tical lattices for q...
This thesis describes the progress achieved towards two goals. One is the construction of a compact...
Cold atom experiments open wide prospects for applications in metrology, quantum computing, quantum ...
Abstract. We discuss the possibility of trapping polar molecules in the standing-wave electromagneti...
Achieving precise control over an array of ultracold molecules would provide a unique tool-set for c...
The aim of our experiment is to explore two methods of creating an ultracold dipolar gas which can s...
This thesis describes atomic physics experiments performed using a microfabricated photonic waveguid...
We describe a dynamic magneto-optical trap (MOT) suitable for the use with vacuum systems in which o...
We demonstrate a trap that confines polarizable particles around the antinode of a standing-wave mic...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
We duscuss a resonant microwave trap for neutral atoms. Because of the long spontaneous radiation ti...
Arrays of cold atoms in magnetic traps have been implemented for use in quantum simulation, metrolog...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, February 2007.Includes bib...
Laser cooling and trapping in a magneto-optical trap (MOT) have been essential to the success of col...
Cold polar molecules provide unique opportunities to test fundamental physics and chemistry. Their p...
There is great interest in the use of ultracold polar molecules confined in op- tical lattices for q...
This thesis describes the progress achieved towards two goals. One is the construction of a compact...
Cold atom experiments open wide prospects for applications in metrology, quantum computing, quantum ...
Abstract. We discuss the possibility of trapping polar molecules in the standing-wave electromagneti...
Achieving precise control over an array of ultracold molecules would provide a unique tool-set for c...
The aim of our experiment is to explore two methods of creating an ultracold dipolar gas which can s...
This thesis describes atomic physics experiments performed using a microfabricated photonic waveguid...
We describe a dynamic magneto-optical trap (MOT) suitable for the use with vacuum systems in which o...