In this dissertation we focused on two topics: 1. atomic cooperative effect, including superradiance, subradiance and collective Lamb shift in an atomic ensemble; 2. novel topological effect in quantum optics system, such as Haldane model, synthetic magnetic field in superradiance lattice and synthetic spin-orbit interaction in Fock-state lattices. In the first part, we start from the Dicke state, an N-particle atomic ensemble excited by a single photon. Due to the interaction of the atoms with a continuum of vacuum modes, the Dicke state has a larger decay rate compared with an isolated atom, termed the single photon superradiance. In the “opposite” case, the single-photon subradiance state does not decay because of the destructive inter...
We demonstrate that two-dimensional atomic emitter arrays with subwavelength spacing constitute topo...
textIn this dissertation, we discuss the manipulation of ultracold atoms with optical fields. We sh...
In this thesis, a computational electromagnetics framework for cavity and waveguide quantum electrod...
In this dissertation we focused on two topics: 1. atomic cooperative effect, including superradiance...
The ability to precisely and coherently control atomic systems has improved dramatically in the last...
The advances in laser cooling and trapping techniques allow samples of ultra-cold atoms to be create...
In this thesis, I am intending to understand the cooperative effect of an ensemble of quantum emitte...
Topological phases are intriguing phases of matter which cannot be described with traditional charac...
textThe potential impact of quantum computing has stimulated a worldwide effort to develop the neces...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Physics, 2008.This electronic version...
A neutral atom interacting with a single mode of a high finesse cavity provides an opportunity to st...
Ultra-cold quantum gases subjected to light-induced synthetic gauge potentials have become an emerge...
The ability to understand and control the internal state of the atom is essential to cold atom schem...
High optical nonlinearities can be achieved at the single photon level by coupling the photon states...
In this thesis we studied quantum interference and decoherence effects in systems like atoms, ions, ...
We demonstrate that two-dimensional atomic emitter arrays with subwavelength spacing constitute topo...
textIn this dissertation, we discuss the manipulation of ultracold atoms with optical fields. We sh...
In this thesis, a computational electromagnetics framework for cavity and waveguide quantum electrod...
In this dissertation we focused on two topics: 1. atomic cooperative effect, including superradiance...
The ability to precisely and coherently control atomic systems has improved dramatically in the last...
The advances in laser cooling and trapping techniques allow samples of ultra-cold atoms to be create...
In this thesis, I am intending to understand the cooperative effect of an ensemble of quantum emitte...
Topological phases are intriguing phases of matter which cannot be described with traditional charac...
textThe potential impact of quantum computing has stimulated a worldwide effort to develop the neces...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Physics, 2008.This electronic version...
A neutral atom interacting with a single mode of a high finesse cavity provides an opportunity to st...
Ultra-cold quantum gases subjected to light-induced synthetic gauge potentials have become an emerge...
The ability to understand and control the internal state of the atom is essential to cold atom schem...
High optical nonlinearities can be achieved at the single photon level by coupling the photon states...
In this thesis we studied quantum interference and decoherence effects in systems like atoms, ions, ...
We demonstrate that two-dimensional atomic emitter arrays with subwavelength spacing constitute topo...
textIn this dissertation, we discuss the manipulation of ultracold atoms with optical fields. We sh...
In this thesis, a computational electromagnetics framework for cavity and waveguide quantum electrod...