DOE OSTI · 1922195
First benchmarked electron cooling simulations from first principles
Abstract
We present the first microscopic electron cooling simulations from first principles with accurate prediction of cooling time. These simulations were performed using our previously developed numerical method, PHAD, which is the first efficient large-scale collisional numerical method in beam physics. The simulation results are benchmarked with the experimental data of the low energy bunched electron cooling of ion beams at the storage ring CSRm at the IMP facility in China. Here, we have accurately considered the nonlinear dynamics in the whole accelerator system in addition to the electron cooling section. As a result, our simulations correctly reproduced cooling times of the experiments from first principles and without any tuning or fitting parameters in the code.
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Al Marzouk, Afnan, Erdelyi, Bela. 2023-01-26. First benchmarked electron cooling simulations from first principles. https://doi.org/10.1016/j.nima.2023.168092
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