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Fast spectral fitting of hard X-ray bremsstrahlung from truncated power-law electron spectra

机译:截断幂律电子谱对硬X射线致辐射的快速光谱拟合

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摘要

Context. Hard X-Ray bremsstrahlung continuum spectra, such as from solar flares, are commonly described in terms of power-law fits, either to the photon spectra themselves or to the electron spectra responsible for them. In applications various approximate relations between electron and photon spectral indices are often used for energies both above and below electron low-energy cutoffs.\udAims. We examine the form of the exact relationships in various situations, and for various cross-sections, showing that empirical relations sometimes used can be highly misleading especially at energies below the low-energy cutoff, and consider how to improve fitting procedures.\udMethods. We obtain expressions for photon spectra from single, double and truncated power-law electron spectra for a variety of cross-sections and for the thin and thick target models and simple analytic expressions for the non-relativistic Bethe-Heitler case.\udResults. We show that below the low-energy cutoff Kramers and other constant spectral index forms commonly used are very poor approximations to accurate results, but that our analytical forms are a good match; and that above a low-energy cutoff, the Kramers and non-relativistic Bethe-Heitler results match reasonably well with results for up to energies around 100 keV.\udConclusions. Analytical forms of the non-relativistic Bethe-Heitler photon spectra from general power-law electron spectra are good match to exact results for both thin and thick targets and they enable much faster spectral fitting than evaluation of the full spectral integrations.
机译:上下文。诸如来自太阳耀斑的硬X射线致辐射连续谱通常用幂律拟合来描述,无论是对光子谱本身还是对引起它们的电子谱。在应用中,电子和光子光谱指数之间的各种近似关系通常用于电子低能级截止值以下的能量。\ udAims。我们研究了在各种情况下以及在各种横截面上的精确关系的形式,表明有时使用的经验关系可能会产生高度误导性,尤其是在能量低于低能量临界值的情况下,并考虑如何改善拟合过程。\ udMethods。我们从单横截面,双横截面和截断幂律电子光谱获得了各种截面以及薄和厚目标模型的光子光谱表达式,并获得了非相对论的Bethe-Heitler情况的简单解析表达式。\ udResults。我们表明,在低能级截止以下,Kramers和其他常用的恒定光谱指数形式对准确结果的近似值很差,但是我们的分析形式是很好的匹配;并且在低能量截止值以上,Kramers和非相对论的Bethe-Heitler结果与能量高达100 keV左右的结果相当吻合。\ ud结论。来自普通幂律电子光谱的非相对论性Bethe-Heitler光子光谱的分析形式与薄目标和厚目标的精确结果都很好匹配,并且它们比完全光谱积分的评估能更快地进行光谱拟合。

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