In view of current research effort on semiconducting photonic-crystal defect microcavities, we consider the dynamics of an array of coupled optical cavities, each containing an ensemble of qubits. By concentrating on the strong coupling regime, we analytically prove that the nonlinearity inherent in the dynamics of each ensemble coupled to the respective cavity field allows the formation of solitons. We further show how the use of the Holstein-Primakoff transformation and the large-detuning limit with the cavity allows one to recover the Bose-Hubbard model
Nonlinear wavepackets, such as solitons, are seen in many areas of physics. A promising medium where...
Numerical studies, together with asymptotic and spectral analysis, establish regimes in which solito...
We study soliton dynamics in a system of two linearly coupled discrete nonlinear Schrödinger equatio...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
We investigate theoretically soliton excitations and dynamics of their formation in strongly correla...
We analyze in detail an open cavity array using mean-field description, where each cavity field is c...
Observing quantum phenomena in strongly correlated many-particle systems is difficult because of the...
We study the photon transfer along a linear array of three coupled cavities where the central one co...
We consider the quantum theory of three fields interacting via parametric and repulsive quartic coup...
An all optical quantum simulator for the Bose-Hubbard model is proposed and analyzed. The photon hop...
The increasing level of experimental control over atomic and optical systems gained in the past year...
We demonstrate that a photon blockade effect exists in the intracavity coherent photoassociation of ...
We review recent developments in quantum and classical soliton theory, leading to the possibility of...
An important development in modern physics is the emerging capability for investigations of dynamica...
A Bose-Einstein condensate is dispersively coupled to a single mode of an ultra-high finesse optical...
Nonlinear wavepackets, such as solitons, are seen in many areas of physics. A promising medium where...
Numerical studies, together with asymptotic and spectral analysis, establish regimes in which solito...
We study soliton dynamics in a system of two linearly coupled discrete nonlinear Schrödinger equatio...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
We investigate theoretically soliton excitations and dynamics of their formation in strongly correla...
We analyze in detail an open cavity array using mean-field description, where each cavity field is c...
Observing quantum phenomena in strongly correlated many-particle systems is difficult because of the...
We study the photon transfer along a linear array of three coupled cavities where the central one co...
We consider the quantum theory of three fields interacting via parametric and repulsive quartic coup...
An all optical quantum simulator for the Bose-Hubbard model is proposed and analyzed. The photon hop...
The increasing level of experimental control over atomic and optical systems gained in the past year...
We demonstrate that a photon blockade effect exists in the intracavity coherent photoassociation of ...
We review recent developments in quantum and classical soliton theory, leading to the possibility of...
An important development in modern physics is the emerging capability for investigations of dynamica...
A Bose-Einstein condensate is dispersively coupled to a single mode of an ultra-high finesse optical...
Nonlinear wavepackets, such as solitons, are seen in many areas of physics. A promising medium where...
Numerical studies, together with asymptotic and spectral analysis, establish regimes in which solito...
We study soliton dynamics in a system of two linearly coupled discrete nonlinear Schrödinger equatio...