Shot noise suppression at 1D hopping
arXiv:cond-mat/9911318 · doi:10.1103/PhysRevB.61.15975
Abstract
We have carried out a preliminary analysis of shot noise at hopping, focusing on uniform 1D arrays of sites separated by N tunnel barriers. The results show that at low temperatures the low-frequency density of the shot noise varies from 1/N to 1 of the Schottky value, depending on the geometry, electron density, and Coulomb interaction strength. An interesting feature is w^{-1/3} dependence of the current spectral density at intermediate frequencies, which reflects self-similarity of the fluctuations at different size scales.
12 pages, 13 figures
References in corpus (1)
Cited by in corpus (13)
- Possible experimental manifestations of the many-body localization
- Shot Noise Suppression at 2D Hopping
- Enhancing qubit readout through dissipative sub-Poissonian dynamics
- A Numerical Study of Transport and Shot Noise at 2D Hopping
- Hopping Conductivity Beyond The Percolation Regime Probed By Shot-Noise Measurements
- Shot noise at hopping via two sites
- A Numerical Study of Coulomb Interaction Effects on 2D Hopping Transport
- Single-electron soliton avalanches in tunnel junction arrays
- Shot Noise in Mesoscopic Transport Through Localised States
- Radio-frequency operation of a double-island single-electron transistor
- Finite-size effect in shot noise in hopping conduction
- Shot noise in frustrated single-electron arrays
- Sub-electron Charge Relaxation via 2D Hopping Conductors