arXiv · 1304.7357
Noise of a single-electron emitter
Abstract
I analyze the correlation function of currents generated by the periodically driven quantum capacitor emitting single electrons and holes into the chiral waveguide. I compare adiabatic and non-adiabatic, transient working regimes of a single-electron emitter and find the striking difference between the correlation functions in two regimes. Quite generally for the system driven with frequency $Ω$ the correlation function depends on two frequencies, $ω$ and $\ell Ω- ω$, where $\ell$ is an integer. For the emitter driven non-adiabatically the correlation functions for different $\ell$ are similar and almost symmetric in $ω$. While in the case of adiabatic drive the correlation functions for $\ell \ne 0$ are highly asymmetric in $ω$ and exceed significantly the one corresponding to $\ell = 0$. Under optimal operating conditions the correlation function for odd $\ell$ is zero.
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Michael Moskalets. 2013-04-27. Noise of a single-electron emitter. https://doi.org/10.1103/physrevb.88.035433
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