Gabelli J, Fève G, Berroir J-M, Plaçais B, Cavanna A, Etienne B, Jin Y, Glattli D C
Laboratoire Pierre Aigrain, Département de Physique de l'Ecole Normale Supérieure, 24 rue Lhomond, 75231 Paris Cedex 05, France.
Science. 2006 Jul 28;313(5786):499-502. doi: 10.1126/science.1126940. Epub 2006 Jul 13.
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.
在千兆赫兹频率下,一个电阻器和一个电容器串联的完全相干量子电阻 - 电容(RC)电路的复阻抗是多少?虽然基尔霍夫定律预测电容器和电阻器阻抗会相加,但我们报告了一种不同行为的观测结果。这里与电荷弛豫相关的电阻,不同于由朗道尔公式给出的通常的传输电阻。特别是,对于单模导体,电荷弛豫电阻是电阻量子的一半,与该模式的传输情况无关。这里报道的新的介观效应与所有量子器件的动力学机制相关。