Publication | Open Access
Development of a superconducting undulator for the APS
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Citations
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2013
Year
Superconducting MaterialEngineeringNuclear PhysicsSynchrotron Radiation SourceElectromagnetic CompatibilitySuperconducting UndulatorSuperconductivityQuantum MaterialsInstrumentationSuperconducting DevicesAccelerator TechnologyElectrical EngineeringWestern HemispherePhysicsSeveral PrototypesSynchrotron RadiationX-ray Free-electron LaserNatural SciencesApplied PhysicsX-ray BrightnessParticle AcceleratorX-ray Optic
As the western hemisphere's premier x-ray synchrotron radiation source, the Advanced Photon Source (APS) continues to advance the state of the art in insertion device technology in order to maintain record high brightness, especially in the hard x-ray wavelength region. Due to the unique bunch pattern used for normal APS operations and its ultimate capabilities, the APS has chosen superconducting technology for its future hard x-ray undulator sources. In the last several years, the APS in collaboration with the Budker Institute of Nuclear Physics has being developing the technology for planar, small-period superconducting undulators (SCUs). These developments include the design and construction of several prototypes and the construction of the necessary mechanical, vacuum, and cryogenic infrastructure at the APS site. Several prototypes of the SCU magnetic structure have been built and tested. The first SCU is assembled and will be installed in the APS storage ring at the end of 2012. Expected SCU performance in terms of x-ray brightness should noticeably exceed that of existing APS undulators. Immediately after commissioning, the SCU will be used at APS Sector 6 as the radiation source for high-energy x-ray studies.
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