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Avoiding erroneous analysis of MIM diode current-voltage characteristics through exponential fitting

机译:通过指数配件避免对MIM二极管电流电压特性的错误分析

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摘要

Accurate fitting of measured current-voltage [I(V)] data is crucial to the correct analysis and understanding of metal-insulator-metal (MIM) diodes, especially for optical rectennas. With the commonly used polynomial fitting of the I(V) data, the order of the fit can drastically affect the diode performance metrics such as resistance, responsivity, and asymmetry. Additionally, the resulting fitting coefficients provide no useful parameters. An exponential-based equation can fit the I(V) data well, can avoid artifacts from the choice of order of the polynomial, and allows for the accurate calculation of diode performance metrics directly from the fitting coefficients. Connecting the performance metrics to fitting coefficients shows a correspondence between zero-bias responsivity and asymmetry at any given voltage.
机译:测量电流电压的精确拟合[i(v)]数据对于对金属绝缘体 - 金属(MIM)二极管的正确分析和理解,特别是对于光学重定态至关重要。 利用I(v)数据的常用多项式拟合,拟合的顺序可以大大影响二极管性能度量,例如电阻,响应度和不对称性。 另外,所得到的拟合系数不提供有用的参数。 基于指数的等式可以符合I(V)数据良好,可以避免从多项式的顺序选择的伪像,并且允许直接从拟合系数准确计算二极管性能度量。 将性能度量连接到拟合系数显示零偏置响应度与任何给定电压的不对称之间的对应关系。

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