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首页> 外文期刊>Journal of synchrotron radiation >Prospects for X-ray absorption with the super-bright light sources of the future
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Prospects for X-ray absorption with the super-bright light sources of the future

机译:未来超亮光源吸收X射线的前景

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The immense growth in applications of X-ray absorption spectroscopy (XAS) has been enabled by the widespread availability of intense tunable X-rays from synchrotron radiation sources. Recently, new concepts have been proposed for fourth-generation light sources, such as the SASE (self-amplified stimulated emission) X-ray free-electron lasers (XFELs) being pursued at Hamburg (TESLA) and Stanford (LCLS), and the recirculator ring (MARS) at Novosibirsk. These sources offer expected gains of many orders of magnitude in instantaneous brilliance, which will unlock opportunities for qualitatively different science. Examples of new or greatly expanded techniques in XAS could include Raman X-ray absorption fine structure (XAFS), pump-probe experiments, time-resolved XAFS and small-spot X-ray spectromicroscopy, although the limited tunability of the sources might not allow conventional XAFS measurements. Multi-photon X-ray absorption could become a new field of study. There should not be a collective stampede to these new sources, however, and it is likely that storage rings will continue to be necessary for most XAFS applications. The extreme brightness of these future light sources will present difficult challenges in instrumentation, especially detectors and sample containment. Practitioners will also have to exercise caution, because the intensity of the beam will surely destroy many samples and in some cases there will be so many photons absorbed per atom that XAFS will be impossible. [References: 14]
机译:X射线吸收光谱法(XAS)的应用获得了巨大的增长,这是因为同步加速器辐射源广泛提供了可调谐的强烈X射线。最近,已经为第四代光源提出了新概念,例如在汉堡(TESLA)和斯坦福(LCLS)追求的SASE(自放大受激发射)X射线自由电子激光器(XFEL),以及新西伯利亚的循环器环(MARS)。这些来源在瞬时亮度方面可提供许多数量级的预期增益,这将为质素不同的科学释放机会。 XAS中新技术或已大大扩展的技术示例可能包括拉曼X射线吸收精细结构(XAFS),泵浦探针实验,时间分辨XAFS和小光斑X射线光谱显微镜,尽管光源的有限可调性可能不允许常规XAFS测量。多光子X射线吸收可能成为一个新的研究领域。但是,不应该对这些新资源采取集体行动,对于大多数XAFS应用程序来说,很可能仍然需要存储环。这些未来光源的极高亮度将在仪器仪表,尤其是检测器和样品容器方面提出艰巨的挑战。从业人员还必须谨慎行事,因为光束的强度必定会破坏许多样品,并且在某些情况下,每个原子吸收的光子太多,以至于XAFS都是不可能的。 [参考:14]

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