Charge and current fluctuations in a superconducting single-electron transistor near a Cooper pair resonance
- 21 January 2003
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 67 (4) , 045105
- https://doi.org/10.1103/physrevb.67.045105
Abstract
We analyze charge tunneling statistics and current noise in a superconducting single-electron transistor in a regime where the Josephson-quasiparticle cycle is the dominant mechanism of transport. Due to the interplay between Coulomb blockade and Josephson coherence, the probability distribution for tunneling events strongly deviates from a Poissonian and displays a pronounced even-odd asymmetry in the number of transmitted charges. The interplay between charging and coherence is reflected also in the zero-frequency current noise which is significantly quenched when the quasiparticle tunneling rates are comparable to the coherent Cooper pair oscillation frequency. Furthermore, the finite frequency spectrum shows a strong enhancement near the resonant transition frequency for Josephson tunneling.Keywords
All Related Versions
This publication has 23 references indexed in Scilit:
- Full Frequency Back-Action Spectrum of a Single-Electron Transistor during Qubit ReadoutPhysical Review Letters, 2002
- Radio-Frequency Single-Electron Transistor as Readout Device for Qubits: Charge Sensitivity and BackactionPhysical Review Letters, 2001
- Statistics and Noise in a Quantum Measurement ProcessPhysical Review Letters, 2000
- Shot noise in mesoscopic conductorsPhysics Reports, 2000
- Amplifying quantum signals with the single-electron transistorNature, 2000
- Charge sensitivity of superconducting single-electron transistorApplied Physics Letters, 1996
- Finite-frequency shot noise in a single-electron transistorPhysical Review B, 1994
- Zero-frequency current noise for the double-tunnel-junction Coulomb blockadePhysical Review B, 1993
- Classical theory for shot noise in resonant tunnelingPhysical Review B, 1992
- Quantum coherent effects, phase transitions, and the dissipative dynamics of ultra small tunnel junctionsPhysics Reports, 1990