首页> 外文会议> >Instability and Emittance Growth in High-Current Heavy Ion Beam Bunching
【24h】

Instability and Emittance Growth in High-Current Heavy Ion Beam Bunching

机译:大电流重离子束束中的不稳定性和发射率增长

获取原文

摘要

Summary form only given. In a heavy ion inertial fusion (HIF), the generation and transport of intense heavy ion beams are important issues, because the required beam parameters are far from those of the conventional particle accelerator system. Since there are no sufficient data for the system design, the study of space-charge-dominated beams is crucial in HIF. Especially, in the final stage of HIF driver system, the beam pulse must be longitudinally compressed from ~100 to ~10 ns. Induction voltage modulators, based on a pulsed power technology, are proposed for this purpose. The pulsed power technology serves a precise waveform controllability and repetition capability. A beam buncher by the induction modulator can apply bunching voltage so as to make a considerable velocity tilt between the head and the tail of the beam bunch. Although the whole HIF driver design is under construction, the final beam bunching is indispensable in all of the suggested HIF accelerators. We investigate the beam dynamics under a strong space charge effect during the longitudinal bunch compression in the final beam bunching by using the multi-particle numerical simulation. During the final beam bunching, a beam instability is induced by the strong space charge effect. The beam instability can cause the emittance growth. We study the emittance growth mechanism induced by the beam instability with two types of the transverse focusing lattice system, i.e. alternating gradient (AG) focusing and continuous focusing (CF) configurations. In the beam transport with the AG focusing lattice, the beam instability can be induced rather than in the case with the CF lattice configuration
机译:仅提供摘要表格。在重离子惯性聚变(HIF)中,强离子束的产生和传输是重要的问题,因为所需的束参数与常规粒子加速器系统的参数相去甚远。由于没有足够的数据用于系统设计,因此在HIF中研究以空间电荷为主的光束至关重要。特别是在HIF驱动器系统的最后阶段,必须将束脉冲从〜100 ns纵向压缩到〜10 ns。为此,提出了基于脉冲功率技术的感应电压调制器。脉冲功率技术具有精确的波形可控性和重复能力。感应调制器产生的束聚束器可以施加束聚电压,以便在束束的头部和尾部之间产生相当大的速度倾斜。尽管整个HIF驱动器设计正在构建中,但在所有建议的HIF加速器中最终束束都是必不可少的。我们使用多粒子数值模拟研究了在最终束束的纵向束压缩过程中,在强空间电荷效应下的束动力学。在最后的光束聚束过程中,强烈的空间电荷效应会引起光束不稳定。光束的不稳定性会导致发射率的增长。我们用两种类型的横向聚焦晶格系统(即交替梯度(AG)聚焦和连续聚焦(CF)配置)研究了由光束不稳定性引起的发射率增长机制。在使用AG聚焦晶格进行光束传输时,可以引起光束不稳定性,而不是使用CF晶格结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号