Full-scale simulations of dielectric laser-driven accelerators

B. Cowan, G. Bell, R. England, R. Noble, E. Peralta, K. Soong
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引用次数: 2

Abstract

Dielectric laser acceleration (DLA) holds great promise for a new class of high-energy charged particle accelerators. Taking advantage of the high field intensities available from laser sources as well as the high damage threshold of dielectric materials, DLAs can attain more than an order of magnitude higher field gradient-energy gain per unit length-than conventional, microwave cavity-based accelerators. However, the design considerations for DLAs have notable differences from those of conventional accelerators. In this presentation, we first present the physics and requirements of DLAs, illustrating many of the principles through designs of photonic crystal waveguide accelerators. We then describe recent results on simulations of grating structures, discussing the simulation techniques and comparison with experiments.
介电激光驱动加速器的全尺寸模拟
介质激光加速(DLA)是一种新型高能带电粒子加速器。利用激光源的高场强以及介电材料的高损伤阈值,DLAs可以获得比传统的微波腔加速器高一个数量级的场梯度(单位长度的能量增益)。然而,dla的设计考虑与传统加速器有显著的不同。在本报告中,我们首先介绍了光子晶体波导加速器的物理和要求,并通过设计光子晶体波导加速器说明了许多原理。然后介绍了光栅结构模拟的最新结果,讨论了模拟技术并与实验进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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