The typically tiny effect of radiation damping on a moving body can be amplified to a favorable extent by exploiting the sharp reflectivity slope at one edge of an optically induced stop-band in atoms loaded into an optical lattice. In this paper, this phenomenon is demonstrated for the periodically trapped and coherently driven cold 87Rb atoms, where radiation damping might be much larger than that anticipated in previous proposals and become comparable with radiation pressure. Such an enhancement could be observed even at speeds of only a few meters per second with less than 1.0% absorption, making radiation damping experimentally accessible
Measurements of the temperature dependence of trap loss collisions of laser-cooled rubidium atoms ar...
The recent observation of coherent backscattering (CBS) of light by atomshas emphasized the key role...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
The typically tiny effect of radiation damping on a moving body can be amplified to a favorable exte...
The typically tiny effect of radiation damping on a moving body can be amplified to a favorable exte...
The force exerted on a material by an incident beam of light is dependent upon the material's veloci...
Copyright © 2011 American Physical SocietyThe force exerted on a material by an incident beam of lig...
We experimentally study radiation trapping of near-resonant light in a cloud of laser-cooled rubidiu...
The force exerted on a material by an incident beam of light is dependent upon the material's veloci...
Previous studies of the reflection of slow excited atoms entering an empty microwave resonator are e...
In this thesis we investigate the dynamics of cold atoms in optical cavities. We study how the scatt...
This thesis presents work performed to obtain an optical mask for conducting matter-wave interfer-om...
The forces felt by atoms when illuminated with resonant radiation can reduce their velocity dispersi...
We have constructed a tapered magnetic atom guide that is integrated with a magneto-optical trap. We...
The displacement of Rb atoms in a magneto-optical trap (MOT) caused by the force of a finite time se...
Measurements of the temperature dependence of trap loss collisions of laser-cooled rubidium atoms ar...
The recent observation of coherent backscattering (CBS) of light by atomshas emphasized the key role...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...
The typically tiny effect of radiation damping on a moving body can be amplified to a favorable exte...
The typically tiny effect of radiation damping on a moving body can be amplified to a favorable exte...
The force exerted on a material by an incident beam of light is dependent upon the material's veloci...
Copyright © 2011 American Physical SocietyThe force exerted on a material by an incident beam of lig...
We experimentally study radiation trapping of near-resonant light in a cloud of laser-cooled rubidiu...
The force exerted on a material by an incident beam of light is dependent upon the material's veloci...
Previous studies of the reflection of slow excited atoms entering an empty microwave resonator are e...
In this thesis we investigate the dynamics of cold atoms in optical cavities. We study how the scatt...
This thesis presents work performed to obtain an optical mask for conducting matter-wave interfer-om...
The forces felt by atoms when illuminated with resonant radiation can reduce their velocity dispersi...
We have constructed a tapered magnetic atom guide that is integrated with a magneto-optical trap. We...
The displacement of Rb atoms in a magneto-optical trap (MOT) caused by the force of a finite time se...
Measurements of the temperature dependence of trap loss collisions of laser-cooled rubidium atoms ar...
The recent observation of coherent backscattering (CBS) of light by atomshas emphasized the key role...
Optical lattices are periodic arrangements of laser cooled atoms trapped in potentials created by th...