论文标题

在低温温度下与正常导电结构的颗粒加速度的实验证明

Experimental demonstration of particle acceleration with normal conducting accelerating structure at cryogenic temperature

论文作者

Nasr, Mamdouh, Nanni, Emilio, Breidenbach, Martin, Weathersby, Stephen, Oriunno, Marco, Tantawi, Sami

论文摘要

降低正常导电颗粒加速器的工作温度大大提高了其效率。低温操作增加了加速器材料的屈服强度并降低表面电阻,因此与室温操作相比,循环疲劳的大幅度降低可能会大大降低分解速率。此外,温度降低增加了加速腔的固有质量因子,因此,分流阻抗导致系统效率提高和光束负载能力。在本文中,我们介绍了X波段,11.424 GHz,20个线性加速器(LINAC)的高梯度运行的实验证明。我们使用不同的测量值(包括电子束加速度,高达150 mV/m)验证了测试加速器在低温温度下的增强加速参数,对应于375 mV/m的峰表面电场。我们还测量了测试结构中的分解率,显示两个数量级X100的降低与在室温下的值相比,相同的加速梯度的值降低了。

Reducing the operating temperature of normal conducting particle accelerators substantially increases their efficiency. Low-temperature operation increases the yield strength of the accelerator material and reduces surface resistance, hence a great reduction in cyclic fatigue could be achieved resulting in a large reduction in breakdown rates compared to room-temperature operation. Furthermore, temperature reduction increases the intrinsic quality factor of the accelerating cavities, and consequently, the shunt impedance leading to increased system efficiency and beam loading capabilities. In this paper, we present an experimental demonstration of the high-gradient operation of an X-band, 11.424 GHz, 20-cells linear accelerator (linac) operating at a liquid nitrogen temperature of 77 K. The tested linac was previously processed and tested at room temperature. We verified the enhanced accelerating parameters of the tested accelerator at cryogenic temperature using different measurements including electron beam acceleration up to a gradient of 150 MV/m, corresponding to a peak surface electric field of 375 MV/m. We also measured the breakdown rates in the tested structure showing a reduction of two orders of magnitude, x100, compared to their values at room temperature for the same accelerating gradient.

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