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Sequential Measurement of Displacement and Conduction Currents in Electronic Devices

机译:电子设备中位移电流和传导电流的顺序测量

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摘要

The extension of the Ramo-Schockley-Pellegrini theorem for quantum systems allows to define a positive-operator valued measure (POVM) for the total conduction plus displacement electrical current. The resulting current operator is characterized by two parameters, viz. the width of the associated Gaussian functions and the lapse of time between consecutive measurements. For large Gaussian dispersions and small time intervals, the operator obeys to a continuous weak-measurement scheme. Contrarily, in the limit of very narrow Gaussian widths and a single-shot measurement, the operator corresponds to a standard von Neumann (projective) measurement. We have implemented the resulting measurement protocol into a quantum electron transport simulator. Numerical results for a resonant tunneling diode show the great sensibility of current-voltage characteristics to different parameter configurations of the total current operator.
机译:量子系统的Ramo-Schockley-Pellegrini定理的扩展允许为总传导加位移电流定义正算子值量度(POVM)。最终的电流算子由两个参数viz表征。相关高斯函数的宽度以及连续测量之间的时间间隔。对于高斯色散较大且时间间隔较小的情况,操作员应遵循连续的弱测量方案。相反,在非常窄的高斯宽度和单次测量的范围内,操作员对应于标准冯·诺依曼(投射)测量。我们已经将结果测量协议实施到了量子电子传输模拟器中。谐振隧穿二极管的数值结果表明,电流-电压特性对总电流算子的不同参数配置非常敏感。

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