We investigate effects of quantum interferences and Coulomb interaction on the counting statistics of electrons crossing a double quantum dot in a parallel geometry by using a generating function technique based on a quantum master equation approach. The skewness and the average residence time of electrons in the dots are shown to be the quantities most sensitive to interferences and Coulomb coupling. The joint probabilities of consecutive electron transfer processes show characteristic temporal oscillations due to interference. The steady-state fluctuation theorem that predicts a universal relation between the number of forward and backward transfer events is shown to hold even in the presence of the Coulomb coupling and interference. © 20...
We demonstrate real-time detection of self-interfering electrons in a double quantum dot embedded in...
We explore the full counting statistics of single-electron tunneling through a quantum dot using a q...
Measurements of single electron tunneling through a quantum dot (QD) using a quantum point contact a...
We study the effect of Coulomb interaction on the full counting statistics of an Aharonov-Bohm (AB) ...
We demonstrate that the probability distribution of the net number of electrons passing through a qu...
We theoretically investigate transport signatures of quantum interference in highly symmetric double...
Abstract -We present an analysis of waiting time distributions of consecutive single-electron transf...
A mesoscopic Coulomb blockade system with two transport channels is studied in terms of full countin...
We present measurements of single electron tunneling through a quantum dot (QD) using a quantum poin...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
We present an analysis of waiting time distributions of consecutive single-electron transfers throug...
We investigate the effects of Coulomb interaction on charge transfer through a quantum dot attached ...
Electron transport through two parallel quantum dots is a kind of solid-state realization of double ...
Counting statistics investigates the probability P(n,t) that a number n of electrons traverse a nano...
Real-time detection of single electron tunneling through a T-shaped double quantum dot is simulated,...
We demonstrate real-time detection of self-interfering electrons in a double quantum dot embedded in...
We explore the full counting statistics of single-electron tunneling through a quantum dot using a q...
Measurements of single electron tunneling through a quantum dot (QD) using a quantum point contact a...
We study the effect of Coulomb interaction on the full counting statistics of an Aharonov-Bohm (AB) ...
We demonstrate that the probability distribution of the net number of electrons passing through a qu...
We theoretically investigate transport signatures of quantum interference in highly symmetric double...
Abstract -We present an analysis of waiting time distributions of consecutive single-electron transf...
A mesoscopic Coulomb blockade system with two transport channels is studied in terms of full countin...
We present measurements of single electron tunneling through a quantum dot (QD) using a quantum poin...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
We present an analysis of waiting time distributions of consecutive single-electron transfers throug...
We investigate the effects of Coulomb interaction on charge transfer through a quantum dot attached ...
Electron transport through two parallel quantum dots is a kind of solid-state realization of double ...
Counting statistics investigates the probability P(n,t) that a number n of electrons traverse a nano...
Real-time detection of single electron tunneling through a T-shaped double quantum dot is simulated,...
We demonstrate real-time detection of self-interfering electrons in a double quantum dot embedded in...
We explore the full counting statistics of single-electron tunneling through a quantum dot using a q...
Measurements of single electron tunneling through a quantum dot (QD) using a quantum point contact a...