Electron Diffusion in Microbunched Electron Cooling

Fuente: arXiv
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Main Author: Bergan, William
Format: Preprint
Published: 2024
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author Bergan, William
author_facet Bergan, William
contents Coherent electron cooling is a novel method to cool dense hadron beams on timescales of a few hours. This method uses a copropagating beam of electrons to pick up the density fluctuations within the hadron beam in one straight section and then provide corrective energy kicks to the hadrons in a downstream straight, cooling the beam. Microbunched electron cooling is an extension of this idea which induces a microbunching instability in the electron beam as it travels between the two straights, amplifying the signal. However, initial noise in the electron bunch will also be amplified, providing random kicks to the hadrons downstream which tend to increase their emittance. In this paper, we develop an analytic estimate of the effect of the electron noise and benchmark it against simulations. We also discuss how this effect has impacted the cooler design.
format Preprint
id arxiv_https___arxiv_org_abs_2403_17721
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Electron Diffusion in Microbunched Electron Cooling
Bergan, William
Accelerator Physics
Coherent electron cooling is a novel method to cool dense hadron beams on timescales of a few hours. This method uses a copropagating beam of electrons to pick up the density fluctuations within the hadron beam in one straight section and then provide corrective energy kicks to the hadrons in a downstream straight, cooling the beam. Microbunched electron cooling is an extension of this idea which induces a microbunching instability in the electron beam as it travels between the two straights, amplifying the signal. However, initial noise in the electron bunch will also be amplified, providing random kicks to the hadrons downstream which tend to increase their emittance. In this paper, we develop an analytic estimate of the effect of the electron noise and benchmark it against simulations. We also discuss how this effect has impacted the cooler design.
title Electron Diffusion in Microbunched Electron Cooling
topic Accelerator Physics
url https://arxiv.org/abs/2403.17721