Exact calculation of current correlations and admittance in the fractional quantum Hall regime
arXiv:1305.4829 · doi:10.1109/ICNF.2013.6578920
Abstract
In this work, we focus on the finite frequency current-current correlations between edge states in a fractional quantum Hall two dimensional gas and on their relations to the quantum admittance. Using a refermionization method, we calculate these quantities within the same framework. Our results apply whatever the values of backscattering amplitude, frequency, voltage and temperature, allowing us to reach different regimes. Auto-correlations and cross-correlations exhibit distinct frequency dependencies that we discuss in detail.
4 pages, 7 figures
References in corpus (8)
- A Coherent RC Circuit
- Measuring the complex admittance of a carbon nanotube double quantum dot
- The relaxation time of a chiral quantum R-L circuit
- Quantum dot admittance probed at microwave frequencies with an on-chip resonator
- AC conductance and non-symmetrized noise at finite frequency in quantum wires and carbon nanotubes
- High Frequency Quantum Admittance and Noise Measurement with an On-chip Resonant Circuit
- One-channel conductor coupled to a quantum of resistance: exact ac conductance and finite-frequency noise
- Series expansion of the quantum admittance in mesoscopic systems