电容
电容器
非线性系统
电容感应
电荷(物理)
纳米线
量子电容
电压
物理
材料科学
量子
光电子学
半导体
电荷密度
凝聚态物理
拓扑(电路)
电气工程
量子力学
工程类
电极
作者
Joachim Lauwens,Lars Kerkhofs,A. Sala,Bart Sorée
标识
DOI:10.1088/1361-6463/acfe87
摘要
Abstract Electronic devices that work in the quantum regime often employ hybrid nanostructures to bring about a nonlinear behaviour. The nonlinearity that these can provide has proven to be useful, in particular, for applications in quantum computation. Here we present a hybrid device that acts as a capacitor with a nonlinear charge–voltage relation. The device consists of a nanowire placed between the plates of a coplanar capacitor, with a co-parallel alignment. At low temperatures, due to the finite density of states on the nanowire, the charge distribution in the capacitor is uneven and energy-dependent, resulting in a charge-dependent effective capacitance. We study this system analytically and numerically, and show that the nonlinearity of the capacitance is significant enough to be utilized in circuit quantum electrodynamics. The resulting nonlinearity can be switched on, modulated, and switched off by an external potential, thus making this capacitive device highly versatile for uses in quantum computation.
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