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Open AccessJournal ArticleDOI

Self-consistent long-term dynamics of space charge driven resonances in 2D and 3D

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TLDR
In this paper, the authors studied the 3D collective long-term response of beams exposed to resonances and showed that slow synchrotron oscillation plays a significant role in the early time evolution of emittance growth.
Abstract
Understanding the 3D collective long-term response of beams exposed to resonances is of theoretical interest and essential for advancing high intensity synchrotrons. This study of a hitherto unexplored beam dynamical regime is based on 2D and 3D self-consistent particle-in-cell simulations and on careful analysis using tune spectra and phase space. It shows that in Gaussian-like beams Landau damping suppresses all coherent parametric resonances, which are of higher than second order (the ``envelope instability''). Our 3D results are obtained in an exemplary stopband, which includes the second order coherent parametric resonance and a fourth order structural resonance. They show that slow synchrotron oscillation plays a significant role. Moreover, for the early time evolution of emittance growth the interplay of incoherent and coherent resonance response matters, and differentiation between halo and different core regions is essential. In the long-term behavior we identify a progressive, self-consistent drift of particles toward and across the resonance, which results in effective compression of the initial tune spectrum. However, no visible imprint of the coherent features is left over, which only control the picture during the first one or two synchrotron periods. An intensity limit criterion and an asymptotic formula for long-term rms emittance growth are suggested. Comparison with the commonly used non-self-consistent ``frozen space charge'' model shows that in 3D this approximation yields a fast and useful orientation, but it is a conservative estimate of the tolerable intensity.

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Citations
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Journal ArticleDOI

Pulsed electron lenses for space charge compensation in the FAIR synchrotrons

TL;DR: In this paper, a concept of (partial) space charge compensation by pulsed electron lenses is considered for the FAIR heavy-ion synchrotrons SIS18 and SIS100.
Journal ArticleDOI

Beam intensity effects in Fermilab Booster synchrotron

TL;DR: In this paper, the authors report the results of comprehensive experimental studies of various beam intensity dependent effects in the 8 GeV proton Fermilab Booster and analyze the ultimate performance of the machine in the present configuration, with the maximum space-charge tuneshift parameter $\mathrm{\ensuremath{\Delta}}{Q}_{\mathrm{SC}}\ensuredmath{\sim}0.6$, and after its injection energy is upgraded from 0.4 to 0.8 GeV.
Journal ArticleDOI

McMillan electron lens in a system with space charge

TL;DR: In this paper, a thin McMillan lens is proposed to mitigate the distributed space charge (SC) forces by providing an axially-symmetric kick, which is qualitatively opposite to the accumulated effect of beam's own SC.
Journal ArticleDOI

Effects of beam spinning on the fourth-order particle resonance of 3D bunched beams in high-intensity linear accelerators

TL;DR: In this article , the effects of beam spinning on the fourth-order particle resonance in the case of 3D bunched beams with fast acceleration were investigated in both transverse and longitudinal planes.
References
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Journal ArticleDOI

Stability of anisotropic beams with space charge

Ingo Hofmann
- 01 Apr 1998 - 
TL;DR: In this article, the authors derived coherent frequencies and stability properties of anisotropic or ''nonequipartitioned'' beams with different focusing constants and emittances in the two transverse directions.
Proceedings ArticleDOI

Betatron resonances with space charge

TL;DR: In this article, it was shown that betatron resonances do not occur at the incoherent value of the tune, but rather at the frequencies of the appropriate collective modes, which has important implications not only for the design of high intensity, low energy proton synchrotrons, but also for the interpretation of machine studies at existing synchron of this type.
Journal ArticleDOI

Head-tail modes for strong space charge

TL;DR: In this paper, the head-tail modes are described for the space charge tune shift significantly exceeding the synchrotron tune, and the spatial shapes of the modes, their frequencies, and coherent growth rates are explored.
Journal ArticleDOI

Space-charge effects in low-energy proton synchrotrons

TL;DR: In this paper, a simulation of low-energy proton synchrotrons with and without half-integer resonances is presented. But the simulation is performed for a model lattice, similar to the SSC low energy booster, and the beam tracking is completely self-consistent, thus making it possible to follow the charge distribution as well as the beam size as a function of time.
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