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Spectral analysis for wide energy channels

机译:宽能量通道的光谱分析

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摘要

For energetic particle measurements whose spectra follow a power law, it is often challenging to define a characteristic ("effective") energy of an energy channel. In order to avoid time-consuming calculations, the geometric mean is often used as an approximation for the effective energy. This approximation is considered to be pretty good. It is, however, potentially inadequate in cases with wide energy channels and soft spectral slopes. In order to determine the limits of the goodness of the approximation, we derive formulas to calculate the deviation of the effective energy, phase space density and energy density based on the geometric-mean approximation from those based on the power law. The results show that the geometric-mean approximation is usually adequate and that corrections are needed only in extraordinary cases.
机译:对于其光谱遵循幂定律的高能粒子测量,通常难以定义能量通道的特征(“有效”)能量。为了避免费时的计算,通常将几何平均值用作有效能量的近似值。这种近似被认为是非常好的。然而,在宽能量通道和软光谱斜率的情况下,这可能是不够的。为了确定近似优度的极限,我们推导了公式,以基于几何均值近似的有效能量,相空间密度和能量密度与基​​于幂定律的几何能量之间的偏差进行计算。结果表明,几何均值逼近通常是足够的,并且仅在特殊情况下才需要校正。

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