Numerical investigations of heavy ion driven plasma wakefield acceleration

Fuente: arXiv
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Main Authors: Li, Jiangdong, Yang, Jiancheng, Xia, Guoxing, Liu, Jie, Zhan, Wenlong, Zhu, Ruihu
Format: Preprint
Published: 2025
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_version_ 1866908410569555968
author Li, Jiangdong
Yang, Jiancheng
Xia, Guoxing
Liu, Jie
Zhan, Wenlong
Zhu, Ruihu
author_facet Li, Jiangdong
Yang, Jiancheng
Xia, Guoxing
Liu, Jie
Zhan, Wenlong
Zhu, Ruihu
contents Plasma-Based Acceleration (PBA) has emerged as a promising approach to achieve ultra-high gradient particle acceleration. While extensive PBA studies have been conducted using laser, electron, and proton drivers, significant challenges remain in achieving high efficiency, stable acceleration, and scalable energy gain. Meanwhile, due to their higher beam charge density, heavier particle mass and higher kinetic energy, heavy-ion beam drivers represent an interesting direction in PBA research. In this paper, the plasma wakefield acceleration driven by heavy ion beam is studied for the first time, aiming to find the best mechanism for generating high-amplitude wakefields. Using the high intensity, high energy heavy ion beams provided by the High Intensity heavy-ion Accelerator Facility (HIAF), our simulations show that heavy ions can excite stable, high-amplitude plasma wakefields up to 6 GV/m, suitable for electron acceleration. These results show good performance of heavy ion beam drivers and their potential as a viable and promising approach in the field of PBA.
format Preprint
id arxiv_https___arxiv_org_abs_2506_14132
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Numerical investigations of heavy ion driven plasma wakefield acceleration
Li, Jiangdong
Yang, Jiancheng
Xia, Guoxing
Liu, Jie
Zhan, Wenlong
Zhu, Ruihu
Accelerator Physics
Plasma-Based Acceleration (PBA) has emerged as a promising approach to achieve ultra-high gradient particle acceleration. While extensive PBA studies have been conducted using laser, electron, and proton drivers, significant challenges remain in achieving high efficiency, stable acceleration, and scalable energy gain. Meanwhile, due to their higher beam charge density, heavier particle mass and higher kinetic energy, heavy-ion beam drivers represent an interesting direction in PBA research. In this paper, the plasma wakefield acceleration driven by heavy ion beam is studied for the first time, aiming to find the best mechanism for generating high-amplitude wakefields. Using the high intensity, high energy heavy ion beams provided by the High Intensity heavy-ion Accelerator Facility (HIAF), our simulations show that heavy ions can excite stable, high-amplitude plasma wakefields up to 6 GV/m, suitable for electron acceleration. These results show good performance of heavy ion beam drivers and their potential as a viable and promising approach in the field of PBA.
title Numerical investigations of heavy ion driven plasma wakefield acceleration
topic Accelerator Physics
url https://arxiv.org/abs/2506.14132