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DOI:10.18429/JACoW-HB2016-MOPR030
Title Simple Models for Beam Loss Near the Half Integer Resonance with Space Charge
Authors
  • C.M. Warsop, D.J. Adams, B. Jones, B.G. Pine
    STFC/RAL/ISIS, Chilton, Didcot, Oxon, United Kingdom
Abstract The half integer resonance is often used to define the high intensity limit of medium or low energy hadron rings where transverse space charge is significant. However, the mechanism leading to particle loss as beam approaches this resonance, which thus defines the limit, is not clearly understood. In this paper we explore simple models, based on single particle resonance ideas, to see if they describe useful aspects of motion as observed in simulations and experiments of 2D coasting beams on the ISIS synchrotron. Single particle behaviour is compared to 2D self-consistent models to assess when coherent motion begins to affect the single particle motion, and understand the relevance of coherent and incoherent resonance. Whilst the general problem of 2D resonant loss, with non-stationary distributions and non-linear fields is potentially extremely complicated, here we suggest that for a well-designed machine, where higher order pathological loss effects are avoided, a relatively simple model may give valuable insights into beam behaviour and control.
Paper download MOPR030.PDF [0.651 MB / 5 pages]
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 resonance, space-charge, simulation, lattice, coherent-effects
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