We investigate the nonlinear interaction between two photons in a single-input pulse at an atomic two-level nonlinearity. A one-dimensional model for the propagation of light to and from the atom is used to describe the precise spatiotemporal coherence of the two-photon state. It is shown that the interaction generates spatiotemporal entanglement in the output state similar to the entanglement observed in parametric down-conversion. A method of generating photon pairs from coherent pump light using this quantum-mechanical four-wave mixing process is proposed
It is shown that parametric down-conversion, with a short-duration pump pulse and a long nonlinear c...
We present a study of the quantum properties of two light elds used to parametric four-wave mixing ...
Two uncoupled two-level atoms cannot be jointly excited by classical light under general circumstanc...
We investigate the nonlinear interaction between two photons in a single-input pulse at an atomic tw...
We investigate the nonlinear interaction between two photons in a single-input pulse at an atomic tw...
We investigate the nonlinear interaction between two photons in a single-input pulse at an atomic tw...
The nonlinear photon-photon interaction mediated by a single two-level atom is studied theoretically...
The nonlinear photon-photon interaction mediated by a single two-level atom is studied theoretically...
The nonlinear photon-photon interaction mediated by a single two-level atom is studied theoretically...
Motivated by recent experiments, we study four-wave-mixing in an atomic double- system driven by a ...
We study the physics of four-photon states generated in spontaneous parametric down-conversion with ...
We have theoretically analyzed nonclassical paired photons generated spontaneously from a four-level...
The fundamental properties of light derive from its constituent particles—massless quanta (photons) ...
It is shown that parametric down-conversion, with a short-duration pump pulse and a long nonlinear c...
We present a study of the quantum properties of two light fields used to parametric four-wave mixing...
It is shown that parametric down-conversion, with a short-duration pump pulse and a long nonlinear c...
We present a study of the quantum properties of two light elds used to parametric four-wave mixing ...
Two uncoupled two-level atoms cannot be jointly excited by classical light under general circumstanc...
We investigate the nonlinear interaction between two photons in a single-input pulse at an atomic tw...
We investigate the nonlinear interaction between two photons in a single-input pulse at an atomic tw...
We investigate the nonlinear interaction between two photons in a single-input pulse at an atomic tw...
The nonlinear photon-photon interaction mediated by a single two-level atom is studied theoretically...
The nonlinear photon-photon interaction mediated by a single two-level atom is studied theoretically...
The nonlinear photon-photon interaction mediated by a single two-level atom is studied theoretically...
Motivated by recent experiments, we study four-wave-mixing in an atomic double- system driven by a ...
We study the physics of four-photon states generated in spontaneous parametric down-conversion with ...
We have theoretically analyzed nonclassical paired photons generated spontaneously from a four-level...
The fundamental properties of light derive from its constituent particles—massless quanta (photons) ...
It is shown that parametric down-conversion, with a short-duration pump pulse and a long nonlinear c...
We present a study of the quantum properties of two light fields used to parametric four-wave mixing...
It is shown that parametric down-conversion, with a short-duration pump pulse and a long nonlinear c...
We present a study of the quantum properties of two light elds used to parametric four-wave mixing ...
Two uncoupled two-level atoms cannot be jointly excited by classical light under general circumstanc...