Two recent experiments have reported the trapping of individual atoms inside optical resonators by the mechanical forces associated with single photons [Hood et al., Science 287, 1447 (2000), Pinkse et al., Nature (London) 404, 365 (2000)]. Here we analyze the trapping dynamics in these settings, focusing on two points of interest. First, we investigate the extent to which light-induced forces in these experiments are distinct from their free-space counterparts, and whether or not there are qualitatively different effects of optical forces at the single-photon level within the setting of cavity QED. Second, we explore the quantitative features of the resulting atomic motion, and how these dynamics are mapped onto experimentally observable v...
We have observed photon blockade, as evidenced by the photon statistics for light transmitted by an ...
Cavity quantum electrodynamics (cavity QED) describes electromagnetic fields in a confined space and...
We propose a method to implement cavity QED and quantum information processing in high-Q cavities wi...
Two recent experiments have reported the trapping of individual atoms inside optical resonators by t...
Two recent experiments have reported the trapping of individual atoms inside optical resonators by t...
Cavity quantum electrodynamics (QED) offers powerful possibilities for the deterministic control of ...
Single atoms are trapped via strong coupling to single-photon fields in optical cavity QED. Properti...
Single atoms are trapped via strong coupling to single-photon fields in optical cavity QED. Properti...
Between mirrors, the density of electromagnetic modes differs from the one in free space. This chang...
Two recent experiments are discussed which demonstrate real-time trapping and monitoring of single a...
Using laser-cooled atoms strongly coupled to a high finesse optical cavity, we have performed real-t...
The experiments discussed in this thesis focus on the interaction of a single trapped atom with the ...
We present detailed discussions of cooling and trapping mechanisms for an atom in an optical trap in...
Recent experimental advances in the field of cavity quantum electrodynamics (QED) have opened new po...
We have observed photon blockade, as evidenced by the photon statistics for light transmitted by an ...
We have observed photon blockade, as evidenced by the photon statistics for light transmitted by an ...
Cavity quantum electrodynamics (cavity QED) describes electromagnetic fields in a confined space and...
We propose a method to implement cavity QED and quantum information processing in high-Q cavities wi...
Two recent experiments have reported the trapping of individual atoms inside optical resonators by t...
Two recent experiments have reported the trapping of individual atoms inside optical resonators by t...
Cavity quantum electrodynamics (QED) offers powerful possibilities for the deterministic control of ...
Single atoms are trapped via strong coupling to single-photon fields in optical cavity QED. Properti...
Single atoms are trapped via strong coupling to single-photon fields in optical cavity QED. Properti...
Between mirrors, the density of electromagnetic modes differs from the one in free space. This chang...
Two recent experiments are discussed which demonstrate real-time trapping and monitoring of single a...
Using laser-cooled atoms strongly coupled to a high finesse optical cavity, we have performed real-t...
The experiments discussed in this thesis focus on the interaction of a single trapped atom with the ...
We present detailed discussions of cooling and trapping mechanisms for an atom in an optical trap in...
Recent experimental advances in the field of cavity quantum electrodynamics (QED) have opened new po...
We have observed photon blockade, as evidenced by the photon statistics for light transmitted by an ...
We have observed photon blockade, as evidenced by the photon statistics for light transmitted by an ...
Cavity quantum electrodynamics (cavity QED) describes electromagnetic fields in a confined space and...
We propose a method to implement cavity QED and quantum information processing in high-Q cavities wi...