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Self-consistent simulations of heavy-ion beams interacting with electron-clouds

机译:重离子束与电子云相互作用的自洽模拟

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摘要

Electron clouds and rising desorbed gas pressure limit the performance of many existing accelerators and, potentially, that of future accelerators including heavy-ion warm-dense matter and fusion drivers. For the latter, self-consistent simulation of the interaction of the heavy-ion beam(s) with the electron cloud is necessary. To this end, we have merged the two codes WARP (HIF accelerator code) and POSINST (high-energy e-cloud build-up code), and added modules for neutral gas molecule generation, gas ionization, and electron tracking algorithms in magnetic fields with large time steps. The new tool is being benchmarked against the High-Current Experiment (HCX) and good agreement has been achieved. The simulations have also aided diagnostic interpretation and have identified unanticipated physical processes. We present the "roadmap" describing the different modules and their interconnections, along with detailed comparisons with HCX experimental results, as well as a preliminary application to the modeling of electron clouds in the Large Hadron Collider.
机译:电子云和不断升高的解吸气体压力限制了许多现有加速器的性能,并有可能限制了包括重离子热致密物质和聚变驱动器在内的未来加速器的性能。对于后者,必须对重离子束与电子云的相互作用进行自洽的模拟。为此,我们合并了WARP(HIF加速器代码)和POSINST(高能电子云建立代码)这两个代码,并添加了用于磁场中中性气体分子生成,气体电离和电子跟踪算法的模块时间步长较大。该新工具正在针对高电流实验(HCX)进行基准测试,并已达成良好协议。模拟还有助于诊断解释,并确定了意外的物理过程。我们提供了描述不同模块及其互连的“路线图”,并与HCX实验结果进行了详细比较,并初步应用于大型强子对撞机中的电子云建模。

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