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Observation of acceleration and deceleration in gigaelectron-volt-per-metre gradient dielectric wakefield accelerators

机译:千兆电子伏每米梯度介质尾流加速器的加速和减速观察

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摘要

There is urgent need to develop new acceleration techniques capable of exceeding gigaelectron-volt-per-metre (GeV m−1) gradients in order to enable future generations of both light sources and high-energy physics experiments. To address this need, short wavelength accelerators based on wakefields, where an intense relativistic electron beam radiates the demanded fields directly into the accelerator structure or medium, are currently under intense investigation. One such wakefield based accelerator, the dielectric wakefield accelerator, uses a dielectric lined-waveguide to support a wakefield used for acceleration. Here we show gradients of 1.347±0.020 GeV m−1 using a dielectric wakefield accelerator of 15 cm length, with sub-millimetre transverse aperture, by measuring changes of the kinetic state of relativistic electron beams. We follow this measurement by demonstrating accelerating gradients of 320±17 MeV m−1. Both measurements improve on previous measurements by and order of magnitude and show promise for dielectric wakefield accelerators as sources of high-energy electrons.
机译:迫切需要开发新的加速技术,使其能够超过千兆电子伏/米(GeV m -1 )梯度,以实现下一代光源和高能物理实验。为了满足这种需求,目前正在对基于尾流场的短波长加速器进行深入研究,在该场中,强烈的相对论电子束将所需的场直接辐射到加速器结构或介质中。一种这样的基于尾场的加速器,即介电尾场加速器,使用介电衬里波导来支撑用于加速的尾场。在这里,我们通过测量相对论电子束的动力学状态变化,使用长度为15 cm的电介质尾波加速器,具有亚毫米级的横向孔径,显示了1.347±0.020 GeV m −1 的梯度。我们通过演示320±17 MeV m -1 的加速梯度来遵循此测量。两种测量都比以前的测量提高了一个数量级,并显示出将电介质尾波加速器用作高能电子源的希望。

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