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利用带有各种滤光片的电离室测量来估算同步加速器X射线束的绝对通量分布。

Estimating the absolute flux distribution for a synchrotron X-ray beam using ionization-chamber measurements with various filters.

作者信息

Stevenson Andrew W, Di Lillo Francesca

机构信息

Australian Synchrotron, 800 Blackburn Road, Clayton, Victoria 3168, Australia.

Department of Physics `Ettore Pancini', Università di Napoli Federico II, Naples, Italy.

出版信息

J Synchrotron Radiat. 2017 Sep 1;24(Pt 5):939-953. doi: 10.1107/S1600577517009274. Epub 2017 Aug 11.

Abstract

It is shown that an extensive set of accurate ionization-chamber measurements with a primary polychromatic synchrotron X-ray beam transmitted through various filter combinations/thicknesses can be used to quite effectively estimate the absolute flux distribution. The basic technique is simple but the `inversion' of the raw data to extract the flux distribution is a fundamentally ill-posed problem. It is demonstrated, using data collected at the Imaging and Medical Beamline (IMBL) of the Australian Synchrotron, that the absolute flux can be quickly and reliably estimated if a suitable choice of filters is made. Results are presented as a function of the magnetic field (from 1.40 to 4.00 T) of the superconducting multi-pole wiggler insertion device installed at IMBL. A non-linear least-squares refinement of the data is used to estimate the incident flux distribution and then comparison is made with calculations from the programs SPECTRA, XOP and spec.exe. The technique described is important not only in estimating flux itself but also for a variety of other, derived, X-ray properties such as beam quality, power density and absorbed-dose rate. The applicability of the technique with a monochromatic X-ray beam for which there is significant harmonic contamination is also demonstrated. Whilst absolute results can also be derived in this monochromatic beam case, relative (integrated) flux values are sufficient for our primary aim of establishing reliable determinations of the percentages of the various harmonic components.

摘要

结果表明,利用一组广泛的精确电离室测量数据,通过各种滤光片组合/厚度的初级多色同步加速器X射线束传输,可以相当有效地估计绝对通量分布。基本技术很简单,但将原始数据“反演”以提取通量分布是一个本质上不适定的问题。利用在澳大利亚同步加速器成像与医疗束线(IMBL)收集的数据表明,如果选择合适的滤光片,可以快速可靠地估计绝对通量。结果表示为安装在IMBL上的超导多极波荡器插入装置的磁场(从1.40到4.00 T)的函数。对数据进行非线性最小二乘细化以估计入射通量分布,然后与程序SPECTRA、XOP和spec.exe的计算结果进行比较。所描述的技术不仅在估计通量本身方面很重要,而且对于各种其他派生的X射线特性,如光束质量、功率密度和吸收剂量率也很重要。还展示了该技术在存在严重谐波污染的单色X射线束情况下的适用性。虽然在这种单色束情况下也可以得出绝对结果,但相对(积分)通量值对于我们确定各种谐波成分百分比的可靠测定这一主要目标来说已经足够。

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