Title |
Preliminary Design of Mu2E Spill Regulation System (SRS) |
Authors |
- M.A. Ibrahim, E. Cullerton, J.S. Diamond, K.S. Martin, P.S. Prieto, V.E. Scarpinepresenter, P. Varghese
Fermilab, Batavia, Illinois, USA
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Abstract |
Direct µ->e conversion requires resonant extraction of a stream of pulsed beam, comprised of short micro-bunches (pulses) from the Delivery ring (DR) to the Mu2e target. Experimental needs and radiation protection apply strict requirements on the beam quality control and regulation of the spill. The objective of the Spill Regulation System (SRS) is to maintain the intensity uniformity of a stream of ~25K pulses as 10¹² protons are extracted at 590.08kHz over a 43msec spill period. To meet the specified performance, two regulation elements will be driven simultaneously: a family of three zero-harmonic quadrupoles (tune ramp quads) and a RF Knock-Out (RFKO) system. The SRS will use two separate control loops to control each regulation element simultaneously. It will be critical to coordinate the SRS¿ processes within the machine cycle and within each spill interval. The SRS has been designed to have a total Gain-Bandwidth product of 10KHz, which can be used to mitigate several sources of ripple in the spill profile.
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Funding |
This work was supported by the U.S. Department of Energy under contract No. DE-AC02-07CH11359. |
Paper |
download MOPP033.PDF [1.604 MB / 4 pages] |
Poster |
download MOPP033_POSTER.PDF [0.522 MB] |
Export |
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Conference |
IBIC2019 |
Series |
International Beam Instrumentation Conferenc (8th) |
Location |
Malmö, Sweden |
Date |
08-12 September 2019 |
Publisher |
JACoW Publishing, Geneva, Switzerland |
Editorial Board |
Volker RW Schaa (GSI, Darmstadt, Germany); Andreas Jansson (ESS, Lund, Sweden); Thomas Shea (ESS, Lund, Sweden); Johan Olander (ESS, Lund, Sweden) |
Online ISBN |
978-3-95450-204-2 |
Online ISSN |
2673-5350 |
Received |
30 August 2019 |
Accepted |
08 September 2019 |
Issue Date |
10 November 2019 |
DOI |
doi:10.18429/JACoW-IBIC2019-MOPP033 |
Pages |
177-180 |
Copyright |
Published by JACoW Publishing under the terms of the Creative Commons Attribution 3.0 International license. Any further distribution of this work must maintain attribution to the author(s), the published article's title, publisher, and DOI. |
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