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Drive beam stabilisation in the CLIC Test Facility 3

机译:CLIC测试设施3中的驱动光束稳定

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The proposed Compact Linear Collider (CLIC) uses a high intensity, low energy drive beam to produce the RF power needed to accelerate a lower intensity main beam with 100 MV/m gradient. This scheme puts stringent requirements on drive beam stability in terms of phase, energy and current. The consequent experimental work was carried out in CLIC Test Facility CTF3. In this paper, we present a novel analysis technique in accelerator physics to find beam drifts and their sources in the vast amount of the continuously gathered signals. The instability sources are identified and adequately mitigated either by hardware improvements or by implementation and commissioning of various feedbacks, mostly beam-based. The resulting drive beam stability is of 0.2°@ 3 GHz in phase, 0.08% in relative beam energy and about 0.2% beam current. Finally, we propose a stabilisation concept for CLIC to guarantee the main beam stability.
机译:拟议的紧凑型线性对撞机(CLIC)使用高强度,低能量的驱动光束来产生以100 MV / m的梯度加速较低强度主光束所需的RF功率。该方案在相位,能量和电流方面对驱动梁的稳定性提出了严格的要求。随后的实验工作在CLIC测试设施CTF3中进行。在本文中,我们提出了一种加速器物理学中的新颖分析技术,可以在大量连续收集的信号中找到波束漂移及其来源​​。通过硬件改进或各种反馈(大多数是基于波束的)的实现和调试,可以识别并充分缓解不稳定源。最终驱动光束的相位稳定度为0.2°@ 3 GHz,相对光束能量为0.08%,光束电流约为0.2%。最后,我们为CLIC提出了一种稳定概念,以保证主光束的稳定性。

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