论文标题
横梁使用超高真空多膜和发射交换光束线进行塑造
Beam shaping using an ultra-high vacuum multileaf collimator and emittance exchange beamline
论文作者
论文摘要
我们基于独立驱动的钨带,可以选择性地散布不需要的颗粒,以向带电粒子梁的多动物准直仪(MLC)开发。 MLC与发射交换光束线结合使用,以快速生成高度可变的纵向束轮廓。开发的MLC由40个独立叶子组成,宽2毫米,可移动到10毫米,并在超高的真空环境中运行,这是由诸如磁耦合的驱动诸如新型特征启用的。在发射式交换光束线之前,先前使用了不灵活的激光切割掩模进行横梁成型的Argonne Wakefield加速器的实验,用于测试功能。该实验证明了在MLC下游的闪烁体上测量的无数横向面膜轮廓,并在发射量交换后的相应纵向剖面,该纵向剖面是使用横向偏转腔度测量的。掩盖形状之间快速变化可以迅速执行各种实验,而无需与传统方法相关的停机时间。 MLC的许多自由度可以使用前馈控制和先进的机器学习方法来优化功绩的实验数字。
We report the development of a multileaf collimator (MLC) for charged particle beams, based on independently actuated tungsten strips which can selectively scatter unwanted particles. The MLC is used in conjunction with an emittance exchange beamline to rapidly generate highly variable longitudinal bunch profiles. The developed MLC consists of 40 independent leaves that are 2 mm wide and can move up to 10 mm, and operates in an ultra high vacuum environment, enabled by novel features such as magnetically coupled actuation. An experiment at the Argonne Wakefield Accelerator, which previously used inflexible, laser-cut masks for beam shaping before an emittance exchange beamline, was conducted to test functionality. The experiment demonstrated myriad transverse mask silhouettes, as measured on a scintillator downstream of the MLC and the corresponding longitudinal profiles after emittance exchange, as measured using a transverse deflecting cavity. Rapidly changing between mask shapes enables expeditious execution of various experiments without the downtime associated with traditional methods. The many degrees of freedom of the MLC can enable optimization of experimental figures of merit using feed-forward control and advanced machine learning methods.