Numerical Modeling of a Proof-of-Principle Experiment on Optical Stochastic Cooling at the IOTA Electron Storage Ring

Fuente: arXiv
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Main Authors: Dick, Austin, Borland, Michael, Jarvis, Jonathan, Lebedev, Valeri, Piot, Philippe, Romanov, Aleksandr, Wallbank, Michael
Format: Preprint
Published: 2023
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author Dick, Austin
Borland, Michael
Jarvis, Jonathan
Lebedev, Valeri
Piot, Philippe
Romanov, Aleksandr
Wallbank, Michael
author_facet Dick, Austin
Borland, Michael
Jarvis, Jonathan
Lebedev, Valeri
Piot, Philippe
Romanov, Aleksandr
Wallbank, Michael
contents Cooling of beams circulating in storage rings is critical for many applications including particle colliders and synchrotron light sources. A method enabling unprecedented beam-cooling rates, optical stochastic cooling (OSC), was recently demonstrated in the IOTA electron storage ring at Fermilab. This paper describes the numerical implementation of the OSC process in the particle-tracking program ELEGANT and discusses the validation of the developed model with available experimental data. The model is also employed to highlight some features associated with different modes of operation of OSC. The developed simulation tool should be valuable in guiding future configurations of optical stochastic cooling and, more broadly, modeling self-field-based beam manipulations.
format Preprint
id arxiv_https___arxiv_org_abs_2306_07898
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Numerical Modeling of a Proof-of-Principle Experiment on Optical Stochastic Cooling at the IOTA Electron Storage Ring
Dick, Austin
Borland, Michael
Jarvis, Jonathan
Lebedev, Valeri
Piot, Philippe
Romanov, Aleksandr
Wallbank, Michael
Accelerator Physics
Cooling of beams circulating in storage rings is critical for many applications including particle colliders and synchrotron light sources. A method enabling unprecedented beam-cooling rates, optical stochastic cooling (OSC), was recently demonstrated in the IOTA electron storage ring at Fermilab. This paper describes the numerical implementation of the OSC process in the particle-tracking program ELEGANT and discusses the validation of the developed model with available experimental data. The model is also employed to highlight some features associated with different modes of operation of OSC. The developed simulation tool should be valuable in guiding future configurations of optical stochastic cooling and, more broadly, modeling self-field-based beam manipulations.
title Numerical Modeling of a Proof-of-Principle Experiment on Optical Stochastic Cooling at the IOTA Electron Storage Ring
topic Accelerator Physics
url https://arxiv.org/abs/2306.07898