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High quality proton beams from hybrid integrated laser-driven ion acceleration systems

机译:来自混合集成激光驱动离子加速系统的高质量质子束

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摘要

We consider a hybrid acceleration scheme for protons where the laser generated beam is selected in energy and angle and injected into a compact linac, which raises the energy from 30 to 60 MeV. The laser acceleration regime is TNSA and the energy spectrum is determined by the cutoff energy and proton temperature. The dependence of the spectrum on the target properties and the incidence angle is investigated with 2D PIC simulations. We base our work on widely available technologies and on laser with a short pulse, having in mind a facility whose cost is approximately 15M€. Using a recent experiment as the reference, we choose the laser pulse and target so that the energy spectrum obtained from the 3D PIC simulation is close to the one observed, whose cutoff energy was estimated to be over 50 MeV. Laser accelerated protons in the TNSA regime have wide energy spectrum and broad divergence. In this paper we compare three transport lines, designed to perform energy selection and beam collimation. They are based on a solenoid, a quadruplet of permanent magnetic quadrupoles and a chicane. To increase the maximum available energy, which is actually seen as an upper limit due to laser properties and available targets, we propose to inject protons into a small linac for post-acceleration. The number of selected and injected protons is the highest with the solenoid and lower by one and two orders of magnitude with the quadrupoles and the chicane respectively. Even though only the solenoid enables achieving to reach a final intensity at the threshold required for therapy with the highest beam quality, the other systems will be very likely used in the first experiments. Realistic start-to-end simulations, as the ones reported here, are relevant for the design of such experiments.
机译:我们考虑质子的混合加速方案,其中在能量和角度上选择激光束,然后将其注入紧凑的直线加速器中,从而将能量从30 MeV提高到60 MeV。激光加速方式为TNSA,能谱由截止能量和质子温度决定。利用2D PIC仿真研究了光谱对目标特性和入射角的依赖性。我们的工作基于广泛可用的技术和短脉冲激光,同时考虑到设备成本约为1500万欧元。使用最近的实验作为参考,我们选择激光脉冲和目标,以使从3D PIC模拟获得的能谱接近观察到的能谱,据估计其截止能超过50 MeV。 TNSA体制中的激光加速质子具有宽的能谱和宽的发散度。在本文中,我们比较了设计用于执行能量选择和光束准直的三种传输线。它们基于螺线管,永磁四极杆和四极杆的四极杆。为了增加最大可用能量(实际上由于激光属性和可用目标而被视为上限),我们建议将质子注入小直线加速器中以进行后加速。所选的和注入的质子数在螺线管中最高,而在四极子和斜角中分别降低一个和两个数量级。即使只有螺线管能够在达到最高束质量的治疗所需的阈值上达到最终强度,其他系统也很可能会用于第一个实验中。如此处报道的那样,逼真的从头到尾的仿真与此类实验的设计有关。

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  • 作者单位

    Dipartimento di Fisica e Astronomia, Universita di Bologna and INFN Sezione di Bologna, Via Irnerio 46,1-40126 Bologna (BO), Italy;

    Dipartimento di Fisica e Astronomia, Universita di Bologna and INFN Sezione di Bologna, Via Irnerio 46,1-40126 Bologna (BO), Italy;

    Dipartimento di Fisica e Astronomia, Universita di Bologna and INFN Sezione di Bologna, Via Irnerio 46,1-40126 Bologna (BO), Italy;

    Dipartimento di Fisica e Astronomia, Universita di Bologna and INFN Sezione di Bologna, Via Irnerio 46,1-40126 Bologna (BO), Italy;

    Dipartimento di Fisica, Universita di Milano and INFN Sezione di Milano, Via F.lli Cervi 201,1-20090 Segrate (MI), Italy;

    Dipartimento di Fisica, Universita di Milano and INFN Sezione di Milano, Via F.lli Cervi 201,1-20090 Segrate (MI), Italy;

    Kansai Photon Science Institute (JAEA), Umemidai 8-1-7, Kizugawa-shi, Kyoto 619-0215, Japan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    3D PIC; Laser-acceleration; Beam transport; Post-acceleration;

    机译:3D PIC;激光加速光束传输;后加速;

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