We show theoretically how quantum interference between linearly coupled modes with weak local nonlinearity allows the generation of continuous variable entanglement. By solving the quantum master equation for the density matrix, we show how the entanglement survives realistic levels of pure dephasing. The generation mechanism forms a paradigm for entanglement generation in arrays of coupled quantum modes.Published versio
We examine the gain saturation effect in non-Hermitian systems of coupled gain–loss waveguides and w...
We study the manipulation of quantum entanglement by periodic external fields. As an entanglement me...
Summarization: We introduce a scheme for generating entanglement between two quantum dots using a pl...
We show theoretically how quantum interference between linearly coupled modes with weak local nonlin...
We study a driven-dissipative array of coupled nonlinear optical resonators by numerically solving t...
Engineering a stationary entanglement between atoms or ions placed at small distances is a challengi...
We develop the analytic theory describing the formation and evolution of entangled quantum states fo...
International audienceIn a recent paper [Barral et al., Phys. Rev. A 96, 053822 (2017)], we proposed...
Entanglement is a property of composite physical systems distinct from any classical description and...
We show theoretically that polariton pairs with a high degree of polarization entanglement can be pr...
International audienceWe show that a quantum-limited phase-preserving amplifier can act as a which-p...
Abstract. We study the evolution of twin-beam propagating inside active media that may be used to es...
We propose a new approach to generate entangled states, both hybrid and consisting exclusively of co...
A model is presented of nth order nonlinear processes in whispering gallery mode resonators, with sc...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We examine the gain saturation effect in non-Hermitian systems of coupled gain–loss waveguides and w...
We study the manipulation of quantum entanglement by periodic external fields. As an entanglement me...
Summarization: We introduce a scheme for generating entanglement between two quantum dots using a pl...
We show theoretically how quantum interference between linearly coupled modes with weak local nonlin...
We study a driven-dissipative array of coupled nonlinear optical resonators by numerically solving t...
Engineering a stationary entanglement between atoms or ions placed at small distances is a challengi...
We develop the analytic theory describing the formation and evolution of entangled quantum states fo...
International audienceIn a recent paper [Barral et al., Phys. Rev. A 96, 053822 (2017)], we proposed...
Entanglement is a property of composite physical systems distinct from any classical description and...
We show theoretically that polariton pairs with a high degree of polarization entanglement can be pr...
International audienceWe show that a quantum-limited phase-preserving amplifier can act as a which-p...
Abstract. We study the evolution of twin-beam propagating inside active media that may be used to es...
We propose a new approach to generate entangled states, both hybrid and consisting exclusively of co...
A model is presented of nth order nonlinear processes in whispering gallery mode resonators, with sc...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We examine the gain saturation effect in non-Hermitian systems of coupled gain–loss waveguides and w...
We study the manipulation of quantum entanglement by periodic external fields. As an entanglement me...
Summarization: We introduce a scheme for generating entanglement between two quantum dots using a pl...