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The relaxation time of a chiral quantum R-L circuit (2007)

Abstract
We report on the GHz complex admittance of a chiral one dimensional ballistic conductor formed by edge states in the quantum Hall regime. The circuit consists of a wide Hall bar (the inductor L) in series with a tunable resistor (R) formed by a quantum point contact. Electron interactions between edges are screened by a pair of side gates. Conductance steps are observed on both real and imaginary parts of the admittance. Remarkably, the phase of the admittance is transmission-independent. This shows that the relaxation time of a chiral R-L circuit is resistance independent. A current and charge conserving scattering theory is presented that accounts for this observation with a relaxation time given by the electronic transit time in the c cuit.

Publication details
Download http://hal.archives-ouvertes.fr/hal-00126930/en/
Publisher HAL - CCSD
Repository INRIA a CCSD electronic archive server based on P.A.O.L (France)
Keywords Physics/Condensed Matter/Mesoscopic Systems and Quantum Hall Effect
Type peer-reviewed article
Language English
Relation http://hal.archives-ouvertes.fr/docs/00/14/62/49/PDF/Placais_PRL98_166806.pdf