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A method for correcting cosine-law errors in SEU test data

机译:一种校正SEU测试数据中余弦定律误差的方法

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Single-event upset tests often change the angle of the ion beam relative to the device to mimic a change in ion linear energy transfer, and the data are then converted via an assumed cosine law. The converted data are intended to represent device susceptibility at normal incidence, but the cosine law sometimes contains considerable error. The standard method for correcting this error is based on the rectangular parallelepiped (RPP) model. However, exact analytical expressions derived from this model are not particularly simple, so specialized computer codes are needed unless approximations are used. This paper starts with an alternate physical model, utilizing a charge-collection efficiency function, and derives an exact analytical result (called the alpha law here) that replaces the cosine law but is almost as simple as the cosine law, even when device susceptibility has a strong azimuthal dependence. The same model can be used to calculate (via numerical integrations) rates in a known heavy-ion environment. An alternative is to use model parameters to construct the parameters for an integrated RPP calculation of rates.
机译:单事件翻转测试通常会改变离子束相对于设备的角度,以模仿离子线性能量转移的变化,然后通过假定的余弦定律转换数据。转换后的数据旨在表示正常入射时的设备敏感性,但是余弦定律有时会包含相当大的误差。纠正此错误的标准方法是基于长方体(RPP)模型。但是,从该模型导出的精确解析表达式并不是特别简单,因此,除非使用近似值,否则需要专用的计算机代码。本文从一个替代的物理模型开始,利用电荷收集效率函数,并得出了一个精确的分析结果(在此称为“阿尔法”定律),该结果取代了余弦定律,但几乎与余弦定律一样简单,即使设备的磁化率已经达到强烈的方位角依赖性。在已知的重离子环境中,可以使用相同的模型来计算(通过数值积分)速率。一种替代方法是使用模型参数来构造用于速率的综合RPP计算的参数。

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