Ablett J M, Berman L E, Kao C C, Rakowsky G, Lynch D
National Synchrotron Light Source, Brookhaven National Laboratory, Upton, NY 11973, USA.
J Synchrotron Radiat. 2004 Mar 1;11(Pt 2):129-31. doi: 10.1107/S0909049503022921. Epub 2004 Feb 12.
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 approximately 3.7-16 keV at the NSLS, and replaces an in-vacuum undulator which had a more limited tunability.
国家同步辐射光源(NSLS)的2.8 GeV电子储存环在插入式设备的研发方面持续保持高标准。查斯曼-格林NSLS晶格设计除了具有非常小的垂直β函数外,还提供了无色散的长直段。由于电子束尺寸与该函数的平方根成正比,十多年前就开展了一个利用这一特性的项目,即在NSLS储存环中安装短周期小间隙插入式设备。利用真空型波荡器,已经实现了利用现有的中能同步辐射电子储存环在更硬的X射线区域产生高亮度光子束的可能性。本文报道了一个周期为1.25 cm的微间隙波荡器在NSLS X13直线节内运行至间隙为3.3 mm的情况。它是NSLS在约3.7 - 16 keV能量范围内最亮的硬X射线源,并取代了一个可调谐性更有限的真空型波荡器。