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DOI:10.18429/JACoW-HB2016-MOPR033
Title Beam Acceleration and Transition Crossing in the Fermilab Booster
Authors
  • V.A. Lebedev, C.M. Bhat, J.-F. Ostiguy
    Fermilab, Batavia, Illinois, USA
Abstract To suppress eddy currents, the Fermilab rapid cycling Booster synchrotron has no beam pipe; rather, its combined function dipoles are evacuated, exposing the beam directly to the magnet laminations. This arrangement significantly increases the resistive wall impedance of the dipoles and, in combination with the space charge impedance, substantially complicates longitudinal dynamics at transition. Voltage and accelerating phase profiles in the vicinity of transition are typically empirically optimized to minimize beam loss and emittance growth. In this contribution, we present results of experimental studies of beam acceleration near transition. Using comparisons between observed beam parameters and simulations, we obtain accurate calibrations for the RF program and extract quantitative information about parameters of relevance to the Booster laminated magnets longitudinal impedance model. The results are used to analyze transition crossing in the context of a future 50% increase in beam intensity planned for PIP-II, an upgrade of the Fermilab accelerating complex.
Paper download MOPR033.PDF [0.220 MB / 4 pages]
Poster download MOPR033_POSTER.PDF [0.231 MB]
Conference HB2016, Malmö, Sweden
Series ICFA Advanced Beam Dynamics Workshop on High-Intensity and High-Brightness Hadron Beams (57th)
Proceedings Link to full HB2016 Proccedings
Session Posters Right of Main Hall
Date 04-Jul-16   16:00–18:00
Main Classification Beam Dynamics in Rings
Keywords impedance, simulation, booster, emittance, timing
Publisher JACoW, Geneva, Switzerland
Editors Mohammad Eshraqi (ESS, Lund, Sweden); Garry Trahern (ESS, Lund, Sweden); Volker RW Schaa (GSI, Darmstadt, Germany)
ISBN 978-3-95450-185-4
Published August 2016
Copyright
Copyright © 2016 by JACoW, Geneva, Switzerland     CC-BY Creative Commons License
cc Creative Commons Attribution 3.0