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Synchrotron radiation studies in Poland—The 10th International School and Symposium on Synchrotron Radiation in Natural Science (ISSRNS)

机译:波兰的同步辐射研究—第十届国际同步辐射自然科学研讨会(ISSRNS)

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摘要

The synchrotron radiation exhibits unique properties, making that its interaction with matter provides information on crystal and electronic structure, structure and dynamics of molecules, on the kind and density of defects, magnetism, etc. Over the last few decades synchrotron radiation has become a driving force of advanced characterisation of novel materials. Thanks to the development of synchrotron radiation methods, a significant progress has been observed in structural biology, chemistry, physics or in material science (Dauter, 2005; Riekel and Davies, 2005; Narayanan, 2009). At present, there are over 70 synchrotron radiation facilities in the world (see www.lightsources.org). Large synchrotron rings are in use not only in large countries (USA, UK or Japan) but also in countries of several million population (Sweden, Switzerland, Singapore and Taiwan), in some others the synchrotron radiation facilities are in construction (Jordan, Armenia).
机译:同步辐射具有独特的特性,使其与物质的相互作用提供了有关晶体和电子结构,分子的结构和动力学,缺陷的种类和密度,磁性等信息。在过去的几十年中,同步辐射已成为一种驱动力新型材料先进表征的力量。由于同步加速器辐射方法的发展,在结构生物学,化学,物理学或材料科学方面已观察到重大进展(Dauter,2005; Riekel和Davies,2005; Narayanan,2009)。目前,世界上有70多个同步加速器辐射设施(请参见www.lightsources.org)。大型同步加速器环不仅在大型国家(美国,英国或日本)中使用,而且在数百万人口的国家(瑞典,瑞士,新加坡和台湾)中使用,在其他一些国家中,同步加速器辐射设施也在建设中(约旦,亚美尼亚) )。

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