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首页> 外文期刊>Journal of synchrotron radiation >Small-gap insertion-device development at the National Synchrotron Light Source - performance of the new X13 mini-gap undulator
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Small-gap insertion-device development at the National Synchrotron Light Source - performance of the new X13 mini-gap undulator

机译:国家同步加速器光源的小间隙插入设备开发-新型X13微型间隙波荡器的性能

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摘要

The National Synchrotron Light Source (NSLS) 2.8 GeV electron storage ring continues to set high standards in insertion-device research and development. The Chasman - Green NSLS lattice design provides for dispersion-free long straight sections in addition to a very small vertical beta function. As the electron beam size is proportional to the square root of this function, a program to exploit this feature was undertaken more than a decade ago by implementing short-period small-gap insertion devices in the NSLS storage ring. The possibility of utilizing existing moderate-energy synchrotron radiation electron storage rings to produce high-brightness photon beams into the harder X-ray region have been realised using in-vacuum undulators. In this article the operation of a 1.25 cm-period mini-gap undulator, operating down to a gap of 3.3 mm within the NSLS X13 straight section, is reported. It is the brightest source of hard X-rays in the energy range similar to 3.7 - 16 keV at the NSLS, and replaces an in-vacuum undulator which had a more limited tunability. [References: 12]
机译:美国国家同步加速器光源(NSLS)2.8 GeV电子存储环继续在插入设备的研究和开发中树立了高标准。 Chasman-Green NSLS晶格设计除具有非常小的垂直beta功能外,还提供了无分散的长直段。由于电子束大小与该函数的平方根成正比,因此在十多年前,通过在NSLS存储环中实现短周期小间隙插入设备,开展了利用此功能的程序。利用真空中的波荡器已经实现了利用现有的中等能量的同步加速器辐射电子存储环将高亮度光子束射入较硬的X射线区域的可能性。在本文中,报告了在NSLS X13直段内的1.25 cm周期的微型间隙起伏器的操作,其间隙减小到3.3 mm。在NSLS处,它是能量范围内最硬的X射线源,类似于3.7-16 keV,它取代了可调性更为有限的真空内波动器。 [参考:12]

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