We present a quantum calculation based on scattering theory of the frequency-dependent noise of current in an interacting chaotic cavity. We include interactions of the electron system via long range Coulomb forces between the conductor and a gate with capacitance C. We obtain explicit results exhibiting the two time scales of the problem, the cavity’s dwell time τD and the RC time τC of the cavity in relation to the gate. The noise shows peculiarities at frequencies of the order and exceeding the inverse charge relaxation time τ−1=τ−1D+τ−1C.Peer reviewe
We analyze the frequency-dependent current fluctuations induced into a gate near a quantum point con...
International audienceWe calculate the AC conductance and the finite-frequency non-symmetrized noise...
We present a general formalism based on scattering theory to calculate quantum correlation functions...
We present a quantum calculation based on scattering theory of the frequency-dependent noise of curr...
We derive the symmetrized current-noise spectrum of a quantum dot, which is weakly tunnel-coupled to...
We address frequency-dependent quantum transport through mesoscopic conductors in the semiclassical ...
This thesis is about random fluctuations over time (or noise) of electric currents and voltages occu...
We consider the zero frequency fluctuations of charge inside a mesoscopic conductor in the large cap...
The central topic of this thesis is the physics of noise: the Fourier transform of the current-curre...
We evaluate the RC-time of edge states capacitively coupled to a gate located away from a QPC which ...
We calculate the third cumulant of current in a chaotic cavity with contacts of arbitrary transparen...
Central topic of this thesis are fluctuation phenomena in the electrical current of high-mobility se...
LaTex, 6 pages, 3 pdf figures ; v2 : minor corrections & Refs. addedInternational audienceWe conside...
We calculate the cumulants of the charge transmitted through a chaotic cavity in the limit that the ...
We consider the full nonequilibrium response of a mesoscopic capacitor in the large transparency lim...
We analyze the frequency-dependent current fluctuations induced into a gate near a quantum point con...
International audienceWe calculate the AC conductance and the finite-frequency non-symmetrized noise...
We present a general formalism based on scattering theory to calculate quantum correlation functions...
We present a quantum calculation based on scattering theory of the frequency-dependent noise of curr...
We derive the symmetrized current-noise spectrum of a quantum dot, which is weakly tunnel-coupled to...
We address frequency-dependent quantum transport through mesoscopic conductors in the semiclassical ...
This thesis is about random fluctuations over time (or noise) of electric currents and voltages occu...
We consider the zero frequency fluctuations of charge inside a mesoscopic conductor in the large cap...
The central topic of this thesis is the physics of noise: the Fourier transform of the current-curre...
We evaluate the RC-time of edge states capacitively coupled to a gate located away from a QPC which ...
We calculate the third cumulant of current in a chaotic cavity with contacts of arbitrary transparen...
Central topic of this thesis are fluctuation phenomena in the electrical current of high-mobility se...
LaTex, 6 pages, 3 pdf figures ; v2 : minor corrections & Refs. addedInternational audienceWe conside...
We calculate the cumulants of the charge transmitted through a chaotic cavity in the limit that the ...
We consider the full nonequilibrium response of a mesoscopic capacitor in the large transparency lim...
We analyze the frequency-dependent current fluctuations induced into a gate near a quantum point con...
International audienceWe calculate the AC conductance and the finite-frequency non-symmetrized noise...
We present a general formalism based on scattering theory to calculate quantum correlation functions...