We introduce the Green's functions technique as an alternative theory to the quantum regression theorem formalism for calculating the two-time correlation functions in open quantum systems at the steady state. In order to investigate the potential of this theoretical approach, we consider a dissipative system composed of a single quantum dot inside a semiconductor cavity and the emission spectrum is computed due to the quantum dot as well as the cavity. We propose an algorithm based on the Green's functions technique for computing the emission spectrum that can easily be adapted to more complex open quantum systems. We found that the numerical results based on the Green's functions technique are in perfect agreement with the quantum regress...
A Green's function theory is applied to the description of luminescence and absorption spectra of lo...
A nonequilibrium Green's functions approach is presented for the consistent computation of semicondu...
We investigate gain in microwave photonic cavities coupled to voltage-biased double quantum dot syst...
We found a closed expression for the correlation functions for the solid state system: a quantum dot...
A photon Green's function theory is used to incorporate Bethe-Salpeter-like many body corrections in...
Quantum information science is a rapidly growing research area for that it provides new insights to ...
Spectral properties of a double quantum dot (QD) structure are studied by a causal Green's function ...
The Green's function has been an indispensable tool to study many-body systems that remain one of th...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
A nonequilibrium Green’s-function T -matrix approach is presented for the consistent computation of ...
A Green's function theory is applied to the description of luminescence and absorption spectra of lo...
A method based on spectral Green's functions is presented for the simulation of driven open quantum ...
© Published under licence by IOP Publishing Ltd. The influence of phonon and electron reservoirs on ...
A microscopic approach for the computation of semiconductor quantum well laser power spectra is pres...
A Green's function theory is applied to the description of luminescence and absorption spectra of lo...
A Green's function theory is applied to the description of luminescence and absorption spectra of lo...
A nonequilibrium Green's functions approach is presented for the consistent computation of semicondu...
We investigate gain in microwave photonic cavities coupled to voltage-biased double quantum dot syst...
We found a closed expression for the correlation functions for the solid state system: a quantum dot...
A photon Green's function theory is used to incorporate Bethe-Salpeter-like many body corrections in...
Quantum information science is a rapidly growing research area for that it provides new insights to ...
Spectral properties of a double quantum dot (QD) structure are studied by a causal Green's function ...
The Green's function has been an indispensable tool to study many-body systems that remain one of th...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
A nonequilibrium Green’s-function T -matrix approach is presented for the consistent computation of ...
A Green's function theory is applied to the description of luminescence and absorption spectra of lo...
A method based on spectral Green's functions is presented for the simulation of driven open quantum ...
© Published under licence by IOP Publishing Ltd. The influence of phonon and electron reservoirs on ...
A microscopic approach for the computation of semiconductor quantum well laser power spectra is pres...
A Green's function theory is applied to the description of luminescence and absorption spectra of lo...
A Green's function theory is applied to the description of luminescence and absorption spectra of lo...
A nonequilibrium Green's functions approach is presented for the consistent computation of semicondu...
We investigate gain in microwave photonic cavities coupled to voltage-biased double quantum dot syst...