It has been shown elsewhere that two spatially separated atoms can jointly absorb one photon, whose frequency is equal to the sum of the transition frequencies of the two atoms. We describe this process in the presence of an ensemble of many two-level atoms and show that it can be used to generate spin squeezing and entanglement. This resonant collective process allows us to create a sizable squeezing already at the single-photon limit. It represents a way to generate many-body spin-spin interactions, yielding a two-axis twisting-like interaction among the spins, which is very efficient for the generation of spin squeezing. We perform explicit calculations for ensembles of magnetic molecules coupled to a superconducting coplanar cavities. T...
We examine transfer of particle entanglement and spin squeezing between atomic and photonic subsyste...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
We examine transfer of particle entanglement and spin squeezing between atomic and photonic subsyste...
It has been shown elsewhere that two spatially separated atoms can jointly absorb one photon, whose ...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.This electronic versi...
Squeezing of collective atomic spins has been shown to improve the sensitivity of atomic clocks and ...
We analyze theoretically a scheme that produces spin squeezing via the continuous swapping of atom-p...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
The interaction of classical and quantized electromagnetic fields with an ensemble of atoms in an op...
Using a quantum theory for an ensemble of two- or three-level atoms driven by electromagnetic fields...
We propose and analyze a simple method to squeeze dynamically and unconditionally the collective spi...
Many-body entangled states are key elements in quantum information science and quantum metrology. On...
We consider a collection of atoms prepared in a Bose-Einstein condensate which interact via two-body...
We examine transfer of particle entanglement and spin squeezing between atomic and photonic subsyste...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
We examine transfer of particle entanglement and spin squeezing between atomic and photonic subsyste...
It has been shown elsewhere that two spatially separated atoms can jointly absorb one photon, whose ...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.This electronic versi...
Squeezing of collective atomic spins has been shown to improve the sensitivity of atomic clocks and ...
We analyze theoretically a scheme that produces spin squeezing via the continuous swapping of atom-p...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
The interaction of classical and quantized electromagnetic fields with an ensemble of atoms in an op...
Using a quantum theory for an ensemble of two- or three-level atoms driven by electromagnetic fields...
We propose and analyze a simple method to squeeze dynamically and unconditionally the collective spi...
Many-body entangled states are key elements in quantum information science and quantum metrology. On...
We consider a collection of atoms prepared in a Bose-Einstein condensate which interact via two-body...
We examine transfer of particle entanglement and spin squeezing between atomic and photonic subsyste...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
We examine transfer of particle entanglement and spin squeezing between atomic and photonic subsyste...