Charge transfer statistics in symmetric fractional edge-state Mach-Zehnder interferometer

Abstract

We have studied the zero-temperature statistics of charge transfer between the two edges of Quantum Hall liquids with filling factors 0,1=1/(2 m0,1+1) forming Mach-Zehnder interferometer. The known Bethe ansatz solution for symmetric interferometer is used to obtain the cumulant-generating function of charge at constant voltage V between the edges. Its low-V behavior can be interpreted in terms of electron tunneling, while its large-V asymptotics reproduces the m-state dynamics (m 1+m0+m1) of quasiparticles with fractional (for m>1) charge and statistics. We also analyze the transition region between electrons and quasiparticles.

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