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Quantitative characterization of the X-ray beam at the Australian Synchrotron Imaging and Medical Beamline (IMBL)

机译:澳大利亚同步射线成像和医用梁线X射线束的定量表征(IMBL)

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摘要

A critical early phase for any synchrotron beamline involves detailed testing, characterization and commissioning; this is especially true of a beamline as ambitious and complex as the Imaging & Medical Beamline (IMBL) at the Australian Synchrotron. IMBL staff and expert users have been performing precise experiments aimed at quantitative characterization of the primary polychromatic and monochromatic X-ray beams, with particular emphasis placed on the wiggler insertion devices (IDs), the primary-slit system and any in vacuo and ex vacuo filters. The findings from these studies will be described herein. These results will benefit IMBL and other users in the future, especially those for whom detailed knowledge of the X-ray beam spectrum (or 'quality') and flux density is important. This information is critical for radiotherapy and radiobiology users, who ultimately need to know (to better than 5%) what X-ray dose or dose rate is being delivered to their samples. Various correction factors associated with ionization-chamber (IC) dosimetry have been accounted for, e.g. ion recombination, electron-loss effects. A new and innovative approach has been developed in this regard, which can provide confirmation of key parameter values such as the magnetic field in the wiggler and the effective thickness of key filters. IMBL commenced operation in December 2008 with an Advanced Photon Source (APS) wiggler as the (interim) ID. A superconducting multi-pole wiggler was installed and operational in January 2013. Results are obtained for both of these IDs and useful comparisons are made. A comprehensive model of the IMBL has been developed, embodied in a new computer program named spec. exe, which has been validated against a variety of experimental measurements. Having demonstrated the reliability and robustness of the model, it is then possible to use it in a practical and predictive manner. It is hoped that spec. exe will prove to be a useful resource for synchrotron science in general, and for hard X-ray beamlines, whether they are based on bending magnets or insertion devices, in particular. In due course, it is planned to make spec. exe freely available to other synchrotron scientists.
机译:任何同步辐射束线的批判性早期阶段都涉及详细的测试,表征和调试;这尤其如此雄心勃勃,并且复杂的是澳大利亚同步rotron的成像和医学梁线(IMBL)。 IMBL的工作人员和专家用户已经进行了精确的实验,该实验旨在定量表征初级多色和单色X射线束,特别是在Wiggler插入装置(IDS),初级狭缝系统和真空中的任何压缩和真空上的重点过滤器。本文将描述这些研究的发现。这些结果将来将使IMBL和其他用户受益,尤其是那些对X射线束谱(或'质量')和磁通密度的详细知识的人很重要。该信息对于放疗和放射生物学用户至关重要,最终需要知道(以优于5%)X射线剂量或剂量率正在递送到它们的样品。已经考虑了与电离室(IC)剂量法相关的各种校正因子,例如,离子重组,电子损失效应。这方面已经开发了一种新的和创新的方法,可以提供诸如Wiggler中的磁场等磁场和钥匙滤波器的有效厚度的确认。 IMBL将于2008年12月开始运营,具有先进的光子源(APS)Wiggler作为(临时)ID。在2013年1月安装并运行了超导多极Wiggler。对于这两种ID和有用的比较,获得了结果。已经开发了一种综合模型,体现在一个名为spec的新计算机程序中。 exe,已针对各种实验测量验证。已经证明了模型的可靠性和稳健性,然后可以以实际和预测的方式使用它。希望规范。 exe将是一般的同步科学的有用资源,以及硬X射线光束线,无论它们都是基于弯曲磁体或插入装置。在适当的时候,计划制作规格。 exe自由地提供给其他同步科学家。

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