Using a quantum theory for an ensemble of three-level atoms (lambda) placed in an optical cavity abd driven by electromagnetic fields, we show that the long-lived spin associated with the ground state sublevels can be squeezed. Two kinds of squeezing are obtained: self-spin squeezing, when the input fields are coherent states and the atomic ensemble exhibit a large non-linearity; squeezing transfer, when one of the incoming fields is squeezed
We analyze theoretically a scheme that produces spin squeezing via the continuous swapping of atom-p...
We study the conditions for generating spin squeezing via a quantum non-demolition measurement in an...
Deterministic light-induced spin squeezing in an atomic gas is limited by photon shot noise or, equi...
Using a quantum theory for an ensemble of three-level atoms (lambda) placed in an optical cavity abd...
Using a quantum theory for an ensemble of two- or three-level atoms driven by electromagnetic fields...
Spin squeezing via atom-field interactions is considered within the context of the Tavis-Cummings mo...
Spin squeezing via atom-field interactions is considered within the context of the Tavis-Cummings mo...
We study the photonic principle quadrature squeezing and atomic spin squeezing, and demonstrate that...
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock...
Abstract. The interaction of classical and quantized electromagnetic fields with an ensemble of atom...
We present and analyze a new approach for the generation of atomic spin-squeezed states. Our method ...
We study relations between bosonic quadrature squeezing and atomic spin squeezing, and find that the...
The interaction of classical and quantized electromagnetic fields with an ensemble of atoms in an op...
We propose a simple method for generating spin squeezing of atomic ensembles in a Floquet cavity sub...
We study the three-dimensional nature of the quantum interface between an ensemble of cold, trapped ...
We analyze theoretically a scheme that produces spin squeezing via the continuous swapping of atom-p...
We study the conditions for generating spin squeezing via a quantum non-demolition measurement in an...
Deterministic light-induced spin squeezing in an atomic gas is limited by photon shot noise or, equi...
Using a quantum theory for an ensemble of three-level atoms (lambda) placed in an optical cavity abd...
Using a quantum theory for an ensemble of two- or three-level atoms driven by electromagnetic fields...
Spin squeezing via atom-field interactions is considered within the context of the Tavis-Cummings mo...
Spin squeezing via atom-field interactions is considered within the context of the Tavis-Cummings mo...
We study the photonic principle quadrature squeezing and atomic spin squeezing, and demonstrate that...
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock...
Abstract. The interaction of classical and quantized electromagnetic fields with an ensemble of atom...
We present and analyze a new approach for the generation of atomic spin-squeezed states. Our method ...
We study relations between bosonic quadrature squeezing and atomic spin squeezing, and find that the...
The interaction of classical and quantized electromagnetic fields with an ensemble of atoms in an op...
We propose a simple method for generating spin squeezing of atomic ensembles in a Floquet cavity sub...
We study the three-dimensional nature of the quantum interface between an ensemble of cold, trapped ...
We analyze theoretically a scheme that produces spin squeezing via the continuous swapping of atom-p...
We study the conditions for generating spin squeezing via a quantum non-demolition measurement in an...
Deterministic light-induced spin squeezing in an atomic gas is limited by photon shot noise or, equi...