论文标题
Petawatt激光驱动离子加速度的在线收费测量
Online Charge Measurement for Petawatt Laser-Driven Ion Acceleration
论文作者
论文摘要
激光驱动的离子光束因其在多学科研究和技术中的潜在使用而引起了极大的关注。对其放射生物学有效性的临床前研究已经确定了使用激光驱动的离子束进行放射疗法的前景。特别是,通过高离子束电荷和激光驱动的离子束存在的高离子束电荷和独特的短束长度来实现对超高瞬时剂量率的有益作用的研究。这样的研究需要可靠的在线剂量测定方法,以监视每次激光射击的束电荷,以确保将规定的剂量准确地应用于生物样品中。在本文中,我们介绍了在激光驱动的离子加速器中首次成功使用集成电流变压器(ICT)。这是一种无创诊断,用于测量加速离子束的电荷。它可以在放射生物学实验中实现在线剂量测量,并促进离子束调节,特别是对激光离子源的优化和质子传输光束线的比对。我们介绍了ICT的实现以及与其他诊断的相关性,例如放射性膜,汤姆森抛物线光谱仪和闪烁体。
Laser-driven ion beams have gained considerable attention for their potential use in multidisciplinary research and technology. Pre-clinical studies into their radiobiological effectiveness have established the prospect of using laser-driven ion beams for radiotherapy. In particular, research into the beneficial effects of ultra-high instantaneous dose rates is enabled by the high ion bunch charge and uniquely short bunch lengths present for laser-driven ion beams. Such studies require reliable, online dosimetry methods to monitor the bunch charge for every laser shot to ensure that the prescribed dose is accurately applied to the biological sample. In this paper we present the first successful use of an Integrating Current Transformer (ICT) for laser-driven ion accelerators. This is a non-invasive diagnostic to measure the charge of the accelerated ion bunch. It enables online dose measurements in radiobiological experiments and facilitates ion beam tuning, in particular, optimization of the laser ion source and alignment of the proton transport beamline. We present the ICT implementation and the correlation with other diagnostics such as radiochromic films, a Thomson parabola spectrometer and a scintillator.