We evaluate the distribution of waiting times between electrons emitted by a driven mesoscopic capacitor. Based on a wave packet approach we obtain analytic expressions for the electronic waiting time distribution and the joint distribution of subsequent waiting times. These semi-classical results are compared to a full quantum treatment based on Floquet scattering theory and good agreement is found in the appropriate parameter ranges. Our results provide an intuitive picture of the electronic emissions from the driven mesoscopic capacitor and may be tested in future experiments
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
We consider the full nonequilibrium response of a mesoscopic capacitor in the large transparency lim...
Electron waiting times are an important concept in the analysis of quantum transport in nanoscale co...
The electron waiting time is the time that passes between two subsequent charge transfers in an elec...
International audienceThe distribution of electron waiting times is useful to characterize quantum t...
VK: Low Temperature LaboratoryWe evaluate the joint distributions of electron waiting times in coher...
We investigate the time-dependent response of an interacting mesoscopic capacitor using the Floquet-...
| openaire: EC/H2020/743884/EU//DiracEntanglerThe development of single-electron sources is paving t...
International audienceWe consider a sequence of quantized Lorentzian pulses of noninteracting electr...
In the resonant tunneling regime, sequential processes dominate single-electron transport through qu...
We examine oscillations as a function of Fermi energy in the capacitance of a mesoscopic cavity conn...
On the elementary level, electronic current consists of individual electron tunnelling events that a...
In this thesis, we investigate electronic transport in mesoscopic conductors. In these systems, quan...
The waiting time distribution has, in recent years, proven to be a useful statistical tool for chara...
Funding Information: We thank A. Braggio for useful discussions. This work was supported by the Germ...
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
We consider the full nonequilibrium response of a mesoscopic capacitor in the large transparency lim...
Electron waiting times are an important concept in the analysis of quantum transport in nanoscale co...
The electron waiting time is the time that passes between two subsequent charge transfers in an elec...
International audienceThe distribution of electron waiting times is useful to characterize quantum t...
VK: Low Temperature LaboratoryWe evaluate the joint distributions of electron waiting times in coher...
We investigate the time-dependent response of an interacting mesoscopic capacitor using the Floquet-...
| openaire: EC/H2020/743884/EU//DiracEntanglerThe development of single-electron sources is paving t...
International audienceWe consider a sequence of quantized Lorentzian pulses of noninteracting electr...
In the resonant tunneling regime, sequential processes dominate single-electron transport through qu...
We examine oscillations as a function of Fermi energy in the capacitance of a mesoscopic cavity conn...
On the elementary level, electronic current consists of individual electron tunnelling events that a...
In this thesis, we investigate electronic transport in mesoscopic conductors. In these systems, quan...
The waiting time distribution has, in recent years, proven to be a useful statistical tool for chara...
Funding Information: We thank A. Braggio for useful discussions. This work was supported by the Germ...
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
We consider the full nonequilibrium response of a mesoscopic capacitor in the large transparency lim...
Electron waiting times are an important concept in the analysis of quantum transport in nanoscale co...