Sakurai Y, Oura M, Takahashi S, Hayashi Y, Aoyagi H, Shiwaku H, Kudo T, Mochizuki T, Oikawa Y, Takahasi M, Yoshii K, Kitamura H
JAERI-RIKEN SPring-8 Project Team, Kamigori, Ako-gun, Hyogo 678-12, Japan.
J Synchrotron Radiat. 1998 Jul 1;5(Pt 4):1195-8. doi: 10.1107/S0909049598002088.
SPring-8 front ends have a novel structure which makes it easy to rearrange them and exchange the components. The structure has a common support for all the components except X-ray beam-position monitors and lead collimators. The alignment of the common support as well as the components was carried out with an accuracy of 0.25 mm in the vertical and horizontal directions. Replaceable pumping systems have also been placed on the common support and have achieved a vacuum of 2 x 10(-8) Pa at the upstream part of the front ends without synchrotron radiation. During the commissioning with synchrotron radiation, the pumping systems displayed good pumping-down characteristics. Commissioning has been successfully performed for four standard in-vacuum X-ray undulators and three bending-magnet-beamline front ends up to July 1997. Measurements of temperature rise show that absorber, pre-slits and XY slits can handle the anticipated maximum heat load at a ring current of 100 mA.
SPring-8前端具有一种新颖的结构,这使得它们易于重新排列和更换部件。该结构对除X射线束位置监测器和铅准直器之外的所有部件都有一个共同的支撑。共同支撑以及部件在垂直和水平方向上的对准精度为0.25毫米。可更换的抽气系统也已安装在共同支撑上,并且在前端的上游部分在没有同步辐射的情况下实现了2×10(-8)帕的真空度。在同步辐射调试期间,抽气系统显示出良好的抽气特性。截至1997年7月,已成功完成了对四个标准的真空X射线波荡器和三个弯铁束线前端的调试。温度上升测量表明,吸收器、预狭缝和XY狭缝能够承受在100毫安环电流下预期的最大热负荷。