We consider dephasing by interactions in a one-dimensional chiral fermion system (e.g., a quantum Hall edge state). For finite-range interactions, we calculate the spatial decay of the Green's function at fixed energy, which sets the contrast in a Mach-Zehnder interferometer. Using a physically transparent semiclassical ansatz, we find a power-law decay of the coherence at high energies and zero temperature (T=0), with a universal asymptotic exponent of 1, independent of the interaction strength. We obtain the dephasing rate at T > 0 and the fluctuation spectrum acting on an electron
This PhD thesis is devoted to the engineering of quantum coherence in the integer quantum Hall effec...
We investigate the effect of dephasing/decoherence on quantum transport through open chaotic ballis...
We suggest a straightforward approach to the calculation of the dephasing rate in a fermionic system...
We consider dephasing by interactions in a one-dimensional chiral fermion system (e.g., a quantum Ha...
We consider a ballistic Mach-Zehnder interferometer for electrons propagating chirally in one dimens...
We develop a theoretical description of a Mach-Zehnder interferometer built from integer quantum Hal...
4 pages, 3 figuresInternational audienceA unified approach to decoherence and relaxation of energy r...
We have developed a fermionic boot-strap method to solve a class of chiral one-dimensional fermion m...
International audienceIn this paper we present an experiment where we measured the quantum coherence...
This work is devoted to the study of decoherence process in the integer quantum Hall regime. In this...
We investigate systems of spinless one-dimensional chiral fermions realized, e. g., in the arms of e...
We develop the formalism for the one-loop no-boundary state in a cosmological model with fermions. W...
We review our recent contributions to two topics that have become of interest in the field of open, ...
We study the nonequilibrium dynamics of the Luttinger model after suddenly turning on and off the ba...
In the low-dimensional disordered systems the dephasing time and the inelastic scattering (out-scatt...
This PhD thesis is devoted to the engineering of quantum coherence in the integer quantum Hall effec...
We investigate the effect of dephasing/decoherence on quantum transport through open chaotic ballis...
We suggest a straightforward approach to the calculation of the dephasing rate in a fermionic system...
We consider dephasing by interactions in a one-dimensional chiral fermion system (e.g., a quantum Ha...
We consider a ballistic Mach-Zehnder interferometer for electrons propagating chirally in one dimens...
We develop a theoretical description of a Mach-Zehnder interferometer built from integer quantum Hal...
4 pages, 3 figuresInternational audienceA unified approach to decoherence and relaxation of energy r...
We have developed a fermionic boot-strap method to solve a class of chiral one-dimensional fermion m...
International audienceIn this paper we present an experiment where we measured the quantum coherence...
This work is devoted to the study of decoherence process in the integer quantum Hall regime. In this...
We investigate systems of spinless one-dimensional chiral fermions realized, e. g., in the arms of e...
We develop the formalism for the one-loop no-boundary state in a cosmological model with fermions. W...
We review our recent contributions to two topics that have become of interest in the field of open, ...
We study the nonequilibrium dynamics of the Luttinger model after suddenly turning on and off the ba...
In the low-dimensional disordered systems the dephasing time and the inelastic scattering (out-scatt...
This PhD thesis is devoted to the engineering of quantum coherence in the integer quantum Hall effec...
We investigate the effect of dephasing/decoherence on quantum transport through open chaotic ballis...
We suggest a straightforward approach to the calculation of the dephasing rate in a fermionic system...