We shall review and discuss the key problem of providing a microscopic modeling of state-of-the-art electronic quantum devices. In particular we shall focus on the description of energy-relaxation and decoherence phenomena, explicitly showing the intrinsic limitations of some of the existing treatments (the conventional Markovian approach) via analytical results, and proposing an alternative formulation of the problem in terms of a generalized Fermi’s Golden Rule
Energy dissipation and decoherence in state-of-the-art quantum nanomaterials and related nanodevices...
Microscopic modelling of electronic-phase coherence versus energy dissipation plays a crucial role i...
We analyze the applicability of the Fermi-golden-rule description of quasiparticle relaxation in a c...
We shall review and discuss the key problem of providing a microscopic modeling of state-of-the-art ...
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...
Semiconductor-based optoelectronic quantum devices are new-generation nanosystems in which the carri...
Semiconductor-based optoelectronic quantum devices are new-generation nanosystems in which the carri...
We shall revisit the conventional adiabatic or Markov approximation, stressing its intrinsic failure...
A review of the most advanced microscopic treatments of optoelectronic quantum devices is presented....
A review of the most advanced microscopic treatments of optoelectronic quantum devices is presented....
16 pages, 5 figuresInternational audienceWe present and discuss a general density-matrix description...
In this article we provide a detailed comparison of two possible approaches to the study of the long...
Microscopic modeling of electronic phase coherence versus energy dissipation plays a crucial role in...
Microscopic modeling of electronic phase coherence versus energy dissipation plays a crucial role in...
Energy dissipation and decoherence in state-of-the-art quantum nanomaterials and related nanodevices...
Microscopic modelling of electronic-phase coherence versus energy dissipation plays a crucial role i...
We analyze the applicability of the Fermi-golden-rule description of quasiparticle relaxation in a c...
We shall review and discuss the key problem of providing a microscopic modeling of state-of-the-art ...
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...
Semiconductor-based optoelectronic quantum devices are new-generation nanosystems in which the carri...
Semiconductor-based optoelectronic quantum devices are new-generation nanosystems in which the carri...
We shall revisit the conventional adiabatic or Markov approximation, stressing its intrinsic failure...
A review of the most advanced microscopic treatments of optoelectronic quantum devices is presented....
A review of the most advanced microscopic treatments of optoelectronic quantum devices is presented....
16 pages, 5 figuresInternational audienceWe present and discuss a general density-matrix description...
In this article we provide a detailed comparison of two possible approaches to the study of the long...
Microscopic modeling of electronic phase coherence versus energy dissipation plays a crucial role in...
Microscopic modeling of electronic phase coherence versus energy dissipation plays a crucial role in...
Energy dissipation and decoherence in state-of-the-art quantum nanomaterials and related nanodevices...
Microscopic modelling of electronic-phase coherence versus energy dissipation plays a crucial role i...
We analyze the applicability of the Fermi-golden-rule description of quasiparticle relaxation in a c...