| openaire: EC/H2020/743884/EU//DiracEntanglerThe development of single-electron sources is paving the way for a novel type of experiment in which individual electrons are emitted into a quantum-coherent circuit. However, to facilitate further progress toward fully coherent on-chip experiments with electrons, a detailed understanding of the quantum circuits is needed. Here, it is proposed to perform time-domain spectroscopy of mesoscopic conductors by applying Lorentzian-shaped voltage pulses to an input contact. Specifically, it is shown how characteristic timescales of a quantum-coherent conductor can be extracted from the distribution of waiting times between charge pulses propagating through the circuit. To illustrate the idea, Floquet ...
In this thesis, we present a theory to calculate the time-dependent current flowing through an arbit...
We evaluate the joint distributions of electron waiting times in coherent conductors described by sc...
La génération à la demande d'excitations quantiques dans un état contrôlé permet la construction de ...
| openaire: EC/H2020/743884/EU//DiracEntanglerThe development of single-electron sources is paving t...
The distribution of electron waiting times is useful to characterize quantum transport in mesoscopic...
Au cours de la dernière décennie, un important effort a été fait dans le domaine des conducteurs éle...
The electron waiting time is the time that passes between two subsequent charge transfers in an elec...
In this thesis, we investigate electronic transport in mesoscopic conductors. In these systems, quan...
International audienceAs a general trend, nanoelectronics experiments are shifting towards frequenci...
The on-demand generation of well-controlled quantum excitations leads to the operation of increasing...
We evaluate the distribution of waiting times between electrons emitted by a driven mesoscopic capac...
We propose a dynamical scheme for measuring the full-counting statistics in a mesoscopic conductor u...
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
Quantum mechanics has revolutionized our understanding of the world that surrounds us. Quantum mecha...
Numerical simulation has become a major tool in quantum electronics both for fundamental and applied...
In this thesis, we present a theory to calculate the time-dependent current flowing through an arbit...
We evaluate the joint distributions of electron waiting times in coherent conductors described by sc...
La génération à la demande d'excitations quantiques dans un état contrôlé permet la construction de ...
| openaire: EC/H2020/743884/EU//DiracEntanglerThe development of single-electron sources is paving t...
The distribution of electron waiting times is useful to characterize quantum transport in mesoscopic...
Au cours de la dernière décennie, un important effort a été fait dans le domaine des conducteurs éle...
The electron waiting time is the time that passes between two subsequent charge transfers in an elec...
In this thesis, we investigate electronic transport in mesoscopic conductors. In these systems, quan...
International audienceAs a general trend, nanoelectronics experiments are shifting towards frequenci...
The on-demand generation of well-controlled quantum excitations leads to the operation of increasing...
We evaluate the distribution of waiting times between electrons emitted by a driven mesoscopic capac...
We propose a dynamical scheme for measuring the full-counting statistics in a mesoscopic conductor u...
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
Quantum mechanics has revolutionized our understanding of the world that surrounds us. Quantum mecha...
Numerical simulation has become a major tool in quantum electronics both for fundamental and applied...
In this thesis, we present a theory to calculate the time-dependent current flowing through an arbit...
We evaluate the joint distributions of electron waiting times in coherent conductors described by sc...
La génération à la demande d'excitations quantiques dans un état contrôlé permet la construction de ...