Author: Stevens, J.B.
Paper Title Page
TUAO02 Diagnostics for Collimator Irradiation Studies in the Advanced Photon Source Storage Ring 26
 
  • J.C. Dooling, W. Berg, M. Borland, J.R. Calvey, G. Decker, L. Emery, K.C. Harkay, R.R. Lindberg, A.H. Lumpkin, G. Navrotski, V. Sajaev, J.B. Stevens, Y.P. Sun, K.P. Wootton, A. Xiao
    ANL, Lemont, Illinois, USA
 
  Funding: Work supported by the U.S. D.O.E.,Office of Science, Office of Basic Energy Sciences, under contract number DE-AC02- 06CH11357
The Advanced Photon Source (APS) is building a fourth-generation storage ring (4GSR), replacing the present double-bend achromat lattice with a multibend achromat system thereby allowing the production of ultra-bright x-ray beams. The new lattice enables a two-order-of-magnitude reduction in horizontal beam emittance and a factor of two increase in beam current. The result is an electron beam of very high energy- and power-densities. Initial predictions suggest virtually any material struck by the undiluted electron beam will be damaged. Two experimental beam abort studies have been conducted on collimator test pieces in the present APS SR to inform the design of a fully-functional machine protection system for APS 4GSR operations at 200 mA. A comprehensive suite of diagnostics were employed during the studies The diagnostics used in these experiments are not new, but employed in different ways to obtain unique data sets. With these data sets now in hand, we are developing new numerical tools to guide collimator design.
 
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DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-IBIC2020-TUAO02  
About • paper received ※ 03 September 2020       paper accepted ※ 15 September 2020       issue date ※ 30 October 2020  
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