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Detuned-Structure-Based Beam-Driven Accelerator

机译:基于旋转结构的光束驱动加速器

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An experimental research is being conducted at the Yale University Beam Physics Laboratory, aiming to confirm fundamental aspects of an as-yet untested two-beam collinear electron accelerator concept employing a detuned bimodal cavity structure. The features of this novel beam-driven accelerator concept include (i) interleaving of bunches of the low-current accelerated beam with bunches of the high-current drive beam, while both beams move along the same central axis in the structure; (ii) excitation by the drive beam of two modes of each cavity in the structure, with the frequency of the higher mode equal to three times the frequency of the fundamental TM010 mode; and (iii) detuning of the cavity modes away from the frequency of the accelerated and drive beam bunches, and their third harmonic. Advantages that are anticipated from this approach include (a) operation at higher acceleration gradient with lower breakdown and pulsed heating rates than for a structure of single-mode cavities at the same acceleration gradient, due to the unconventional spatiotemporal field distributions in the bimodal cavities; (b) realization of a transformer ratio well above two, due to the detuning of the cavity modes; and (c) greater system simplicity and lower cost than for a two-beam accelerator with separate drive and accelerated beam-lines. The recent R&D progress is presented.
机译:在耶鲁大学梁物理实验室进行了一个实验研究,旨在确认采用失谐双峰腔结构的尚未出现的双光束共光电电子加速器概念的基本方面。这种新颖的光束驱动的加速器概念的特征包括:(i)交织与高电流驱动梁的束的低电流加速射束的束的,而这两个光束沿着在结构相同的中心轴线移动; (ii)通过结构中每个空腔的两种模式的驱动光束激发,频率较高模式等于基本TM频率的三倍 010 模式; (iii)从加速和驱动梁束的频率和它们的第三次谐波迁移腔模式远离腔体模式。由于双模腔内的单模空腔的结构,从该方法预期的优点包括(a)在更高的加速度梯度下的操作,并且由于双模腔内的非常规时的时空场分布,较低的击穿和脉冲加热速率。 (b)由于腔体模式的损伤,实现变压器比率高于两种; (c)更大的系统简单性和更低的成本,与双梁加速器具有单独的驱动和加速光束线。最近的研发进度呈现。

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