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Development of the Manufacturing and QA Processes for the Magnetic Modules of the LCLS-II Soft X-Ray Undulators

Authors :
Ray, Katherine
Arbelaez, Diego
Band, Alexander
Bianculli, Davide
Brown, Adam
Bruch, Daniel
Callen, Alice
Corlett, John
DeMello, Allan
Dougherty, James
Garcia Fajardo, Laura
Hanzel, Kelly
Humphries, David
Janša, Gasper
Jung, Jin-Young
Leitner, Daniela
Leitner, Matthaeus
Marks, Steve
Martinez-Galarce, Dennis
McCombs, Kyle
Munson, Dawn
Nuhn, Heinz-Dieter
Ortiz, Eliazar
Oven, ŽIga
Rowen, Michael
Sadlier, Daniel
Schlueter, Ross
WalléN, Erik
Waring, Vernon
Wolf, Zachary
Zikmund, Ales
Publication Year :
2017
Publisher :
JACoW, Geneva, Switzerland, 2017.

Abstract

A new free electron laser being built at SLAC National Accelerator Laboratory, the Linear Coherent Light Source II (LCLS-II), will use 21 soft x-ray undulators (SXR) and 32 hard x-ray undulators (HGVPU). Lawrence Berkeley National Laboratory (LBNL) is responsible for the design and manufacturing of all variable-gap, hybrid permanent-magnet undulators. The physics requirements for the undulators specify a longitudinal pole misalignment maximum rms error of 25 μm and a vertical pole misalignment maximum error of 50 μm. In addition, magnet positioning critically influences the gap-dependent field properties due to saturation effects at the smallest operational gaps. This paper discusses the manufacturing and QA methods developed to carefully control the longitudinal and vertical pole and magnet positions during undulator production. Inspection results are discussed based on data gathered during construction of a prototype as well as pre-production soft x-ray undulator.<br />Proceedings of the 8th Int. Particle Accelerator Conf., IPAC2017, Copenhagen, Denmark

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi...........b262df3458fb1af9769842d749dce916
Full Text :
https://doi.org/10.18429/jacow-ipac2017-tupab124