Starting from a recent reformulation of the Markov limit, we apply the mean-field approximation to the resulting Lindblad-type many-electron dynamics, and derive a closed equation of motion for the electronic single-particle density matrix in the presence of one- and two-body scattering mechanisms. The proposed formulation preserves the positive-definite character of the single-particle density matrix. This result is in striking contrast with conventional Markov approaches, where the single-particle mean-field equations can lead to positivity violations and therefore to unphysical result
A new formalism based on the equation of motion for the reduced single-electron density matrix has b...
A recently proposed master equation in the Lindblad form is studied with respect to covariance prope...
Energy dissipation and decoherence in state-of-the-art quantum nanomaterials and related nanodevices...
Starting from a recent reformulation of the Markov limit, we apply the mean-field approximation to t...
A recently proposed Markov approach provides Lindblad-type scattering superoperators, which ensure t...
We derive a local equation of motion for the electronic single-particle density matrix in the presen...
Primary goal of this thesis work is to develop and implement microscopic modeling strategies able to...
16 pages, 5 figuresInternational audienceWe present and discuss a general density-matrix description...
The design and optimization of new-generation solid-state quantum hardware absolutely requires relia...
We shall revisit the conventional adiabatic or Markov approximation, which — contrary to the semicla...
We shall revisit the conventional adiabatic or Markov approximation, which—in contrast to the semicl...
Quantum master equations are common tools to describe the dynamics of many-body systems open to an e...
At long times, residual couplings to the environment become relevant even in the most isolated exper...
Central to many discussion of decoherence is a master equation for the reduced density matrix of a m...
We shall revisit the conventional adiabatic or Markov approximation, showing its intrinsic failure i...
A new formalism based on the equation of motion for the reduced single-electron density matrix has b...
A recently proposed master equation in the Lindblad form is studied with respect to covariance prope...
Energy dissipation and decoherence in state-of-the-art quantum nanomaterials and related nanodevices...
Starting from a recent reformulation of the Markov limit, we apply the mean-field approximation to t...
A recently proposed Markov approach provides Lindblad-type scattering superoperators, which ensure t...
We derive a local equation of motion for the electronic single-particle density matrix in the presen...
Primary goal of this thesis work is to develop and implement microscopic modeling strategies able to...
16 pages, 5 figuresInternational audienceWe present and discuss a general density-matrix description...
The design and optimization of new-generation solid-state quantum hardware absolutely requires relia...
We shall revisit the conventional adiabatic or Markov approximation, which — contrary to the semicla...
We shall revisit the conventional adiabatic or Markov approximation, which—in contrast to the semicl...
Quantum master equations are common tools to describe the dynamics of many-body systems open to an e...
At long times, residual couplings to the environment become relevant even in the most isolated exper...
Central to many discussion of decoherence is a master equation for the reduced density matrix of a m...
We shall revisit the conventional adiabatic or Markov approximation, showing its intrinsic failure i...
A new formalism based on the equation of motion for the reduced single-electron density matrix has b...
A recently proposed master equation in the Lindblad form is studied with respect to covariance prope...
Energy dissipation and decoherence in state-of-the-art quantum nanomaterials and related nanodevices...