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
We present a general theory for the full counting statistics of multiple Andreev reflections in inco...
We explore the full counting statistics of single-electron tunneling through a quantum dot using a q...
We have imaged the current noise with atomic resolution in a Josephson scanning tunneling microscope...
We employ a single-charge counting technique to measure the full counting statistics of Andreev even...
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 provide a direct proof of two-electron Andreev transitions in a superconductor–normal-metal tunne...
We derive the full counting statistics of charge transfer through a voltage biased superconducting j...
We derive the full distribution of transmitted particles through a superconducting point contact of ...
Mesoscopic physics deals with systems whose size is between everyday macroscopic scale and the micro...
Counting statistics investigates the probability P(n,t) that a number n of electrons traverse a nano...
We discuss how threshold detectors can be used for a direct measurement of the full counting statist...
We present a theory for the full distribution of current fluctuations in incoherent diffusive superc...
We investigate the full counting statistics of a voltage-driven normal metal(N)-superconductor(S) co...
We present an extension of the Keldysh-Green s function method, which allows one to calculate the fu...
We present a general theory for the full counting statistics of multiple Andreev reflections in inco...
We explore the full counting statistics of single-electron tunneling through a quantum dot using a q...
We have imaged the current noise with atomic resolution in a Josephson scanning tunneling microscope...
We employ a single-charge counting technique to measure the full counting statistics of Andreev even...
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 provide a direct proof of two-electron Andreev transitions in a superconductor–normal-metal tunne...
We derive the full counting statistics of charge transfer through a voltage biased superconducting j...
We derive the full distribution of transmitted particles through a superconducting point contact of ...
Mesoscopic physics deals with systems whose size is between everyday macroscopic scale and the micro...
Counting statistics investigates the probability P(n,t) that a number n of electrons traverse a nano...
We discuss how threshold detectors can be used for a direct measurement of the full counting statist...
We present a theory for the full distribution of current fluctuations in incoherent diffusive superc...
We investigate the full counting statistics of a voltage-driven normal metal(N)-superconductor(S) co...
We present an extension of the Keldysh-Green s function method, which allows one to calculate the fu...
We present a general theory for the full counting statistics of multiple Andreev reflections in inco...
We explore the full counting statistics of single-electron tunneling through a quantum dot using a q...
We have imaged the current noise with atomic resolution in a Josephson scanning tunneling microscope...