Publication | Open Access
Violation of Kirchhoff's Laws for a Coherent <i>RC</i> Circuit
332
Citations
22
References
2006
Year
Quantum ScienceElectrical EngineeringResistance QuantumQuantum ComputingPhysicsEngineeringQuantum DeviceComplex ImpedanceApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemQuantum DevicesCoherent Quantum Resistance-capacitanceCharge Carrier TransportCoherent ProcessCharge TransportCircuit Analysis
What is the complex impedance of a fully coherent quantum resistance-capacitance (RC) circuit at gigahertz frequencies in which a resistor and a capacitor are connected in series? While Kirchhoff's laws predict addition of capacitor and resistor impedances, we report on observation of a different behavior. The resistance, here associated with charge relaxation, differs from the usual transport resistance given by the Landauer formula. In particular, for a single-mode conductor, the charge-relaxation resistance is half the resistance quantum, regardless of the transmission of the mode. The new mesoscopic effect reported here is relevant for the dynamical regime of all quantum devices.
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