We employ a single-charge counting technique to measure the full counting statistics of Andreev events in which Cooper pairs are either produced from electrons that are reflected as holes at a superconductor–normal-metal interface or annihilated in the reverse process. The full counting statistics consists of quiet periods with no Andreev processes, interrupted by the tunneling of a single electron that triggers an avalanche of Andreev events giving rise to strongly super-Poissonian distributions.Peer reviewe
The hold time τ of a single-electron trap is shown to increase significantly due to suppression of p...
The calculation of the full counting statistics (FCS) for quantum mechanical systems has attracted m...
Despite plenty of room at the bottom, there is a limit to the miniaturization of every process. For ...
We employ a single-charge counting technique to measure the full counting statistics of Andreev even...
We provide a direct proof of two-electron Andreev transitions in a superconductor–normal-metal tunne...
We employ a single-charge counting technique to measure the full counting statistics of Andreev even...
We provide a direct proof of two-electron Andreev transitions in a superconductor-normal-metal tunne...
Statistics of electron tunneling in normal tunnel junctions is studied analytically and numerically ...
We show that the effect of a high-temperature environment in current transport through a normal meta...
We have measured individual tunneling events and Coulomb step shapes in single-electron boxes with o...
Mesoscopic physics deals with systems whose size is between everyday macroscopic scale and the micro...
We have investigated the static, charge-trapping properties of a hybrid superconductor–normal metal ...
We investigate the dynamics of individual quasiparticle excitations on a small superconducting alumi...
Mesoscopic physics deals with systems whose size is between everyday macroscopic scale and the micro...
International audienceWe present measurements of current noise and cross-correlations in three-termi...
The hold time τ of a single-electron trap is shown to increase significantly due to suppression of p...
The calculation of the full counting statistics (FCS) for quantum mechanical systems has attracted m...
Despite plenty of room at the bottom, there is a limit to the miniaturization of every process. For ...
We employ a single-charge counting technique to measure the full counting statistics of Andreev even...
We provide a direct proof of two-electron Andreev transitions in a superconductor–normal-metal tunne...
We employ a single-charge counting technique to measure the full counting statistics of Andreev even...
We provide a direct proof of two-electron Andreev transitions in a superconductor-normal-metal tunne...
Statistics of electron tunneling in normal tunnel junctions is studied analytically and numerically ...
We show that the effect of a high-temperature environment in current transport through a normal meta...
We have measured individual tunneling events and Coulomb step shapes in single-electron boxes with o...
Mesoscopic physics deals with systems whose size is between everyday macroscopic scale and the micro...
We have investigated the static, charge-trapping properties of a hybrid superconductor–normal metal ...
We investigate the dynamics of individual quasiparticle excitations on a small superconducting alumi...
Mesoscopic physics deals with systems whose size is between everyday macroscopic scale and the micro...
International audienceWe present measurements of current noise and cross-correlations in three-termi...
The hold time τ of a single-electron trap is shown to increase significantly due to suppression of p...
The calculation of the full counting statistics (FCS) for quantum mechanical systems has attracted m...
Despite plenty of room at the bottom, there is a limit to the miniaturization of every process. For ...