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HIF research on the University of Maryland Electron Ring (UMER)

机译:马里兰大学电子环(UMER)的HIF研究

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摘要

The understanding of collective interactions of particles in an intense beam by means of long-range forces is crucial for the successful development of heavy ion inertial fusion. Designs for heavy ion fusion drivers call for beam brightness and intensity surpassing traditional limits. Collective effects such as halo formation and emittance growth impose stringent limits on the driver and can raise the costs of the machine. The University of Maryland Electron Ring (UMER), currently near completion, is designed to be a scaled model (3.6-m diameter) for exploring the dynamics of such intense beams. The ring configuration permits the investigation of dispersion and other effects that would occur in bends and a recirculator machine, in addition to those occurring in a straight lattice. Using a 10 keV electron beam, other parameters are scaled to mimic those of much larger ion accelerators, except at much lower cost. An adjustable current in the 0.1-100 mA range provides a range of intensities unprecedented for a circular machine. By design, UMER provides a low-cost, well-diagnosed research platform for driver physics, and for beam physics in general. UMER is augmented with a separate setup, the Long Solenoid Experiment (LSE), for investigating the longitudinal beam dynamics and the evolution of energy spread due to Coulomb collisions in a straight geometry.
机译:借助远距离力了解强束中粒子的集体相互作用对于成功发展重离子惯性聚变至关重要。重离子聚变驱动器的设计要求光束亮度和强度超过传统极限。诸如光晕形成和发射率增长之类的集体效应对驱动器施加了严格的限制,并可能增加机器的成本。即将完成的马里兰大学电子环(UMER)被设计为比例模型(直径3.6米),用于探索这种强束的动力学。环形结构允许研究散布和弯曲和再循环机械中可能发生的其他影响,除了那些以直格子形式存在的影响之外。使用10 keV电子束,其他参数的缩放比例可模仿更大离子加速器的参数,但成本要低得多。 0.1-100 mA范围内的可调电流可提供圆形机器前所未有的强度范围。通过设计,UMER提供了一种低成本,经过良好诊断的研究平台,用于驾驶员物理以及整个射束物理。 UMER增加了一个单独的设置,即长螺线管实验(LSE),用于研究纵向束动力学和直线形几何体中由于库仑碰撞而产生的能量散布的演变。

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