We perform a detailed study of the effect of finite bias and magnetic field on the tunneling-induced decay of the state of a quantum dot by applying a recently discovered general duality [Phys. Rev. B 93, 81411 (2016)]. This duality provides deep physical insight into the decay dynamics of electronic open quantum systems with strong Coulomb interaction. It associates the amplitudes of decay eigenmodes of the actual system to the eigenmodes of a so-called dual system with attractive interaction. Thereby, it predicts many surprising features in the transient transport and its dependence on experimental control parameters: the attractive interaction of the dual model shows up as sharp features in the amplitudes of measurable time-dependent cur...
We analyze the time-dependent solution of master equations by exploiting fermionic duality, a dissip...
Open fermion systems with energy-independent bilinear coupling to a fermionic environment have been ...
We investigate the linear DC transport properties of one-dimensional quantum dots that are immersed ...
We perform a detailed study of the effect of finite bias and magnetic field on the tunneling-induced...
We perform a detailed study of the effect of finite bias and magnetic field on the tunneling-induced...
The study of the dynamics of strongly confined, interacting open quantum systems has attracted great...
Recently, there has been a lot of interest in particle and energy currents through nanoscale devices...
We study the transient heat current out of a confined electron system into a weakly coupled electrod...
We analyze the time evolution of a quantum dot which is proximized by a large-gap superconductor and...
We analyze time-dependent transport through a quantum dot with electron-electron interaction that is...
We study the steady-state current in a minimal model for a quantum dot dominated by charge fluctuati...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
Motivated by the recent discovery of a canyon of conductance suppression in a two-level equal-spin q...
International audienceWe analyze time evolution of charge and spin states in a quantum dot coupled t...
We analyze the time-dependent solution of master equations by exploiting fermionic duality, a dissip...
Open fermion systems with energy-independent bilinear coupling to a fermionic environment have been ...
We investigate the linear DC transport properties of one-dimensional quantum dots that are immersed ...
We perform a detailed study of the effect of finite bias and magnetic field on the tunneling-induced...
We perform a detailed study of the effect of finite bias and magnetic field on the tunneling-induced...
The study of the dynamics of strongly confined, interacting open quantum systems has attracted great...
Recently, there has been a lot of interest in particle and energy currents through nanoscale devices...
We study the transient heat current out of a confined electron system into a weakly coupled electrod...
We analyze the time evolution of a quantum dot which is proximized by a large-gap superconductor and...
We analyze time-dependent transport through a quantum dot with electron-electron interaction that is...
We study the steady-state current in a minimal model for a quantum dot dominated by charge fluctuati...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
Motivated by the recent discovery of a canyon of conductance suppression in a two-level equal-spin q...
International audienceWe analyze time evolution of charge and spin states in a quantum dot coupled t...
We analyze the time-dependent solution of master equations by exploiting fermionic duality, a dissip...
Open fermion systems with energy-independent bilinear coupling to a fermionic environment have been ...
We investigate the linear DC transport properties of one-dimensional quantum dots that are immersed ...