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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Static beam-based alignment for the Ring-To-Main-Linac of the Compact Linear Collider
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Static beam-based alignment for the Ring-To-Main-Linac of the Compact Linear Collider

机译:基于静态光束对齐的紧凑型线性撞机的环到主线圈

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The Compact Linear Collider (CLIC) is a future multi-TeV collider for the post-Large Hadron Collider era. It features high-gradient acceleration and ultra-lowemittance to achieve its ambitious goals of high collision energy and peak luminosity. Beam-based alignment (BBA) techniques are mandatory for CLIC to preserve the ultra-low emittances from the damping rings to the interaction point. In this paper, a detailed study of BBA techniques has been carried out for the entire 27 km long "Ring-To-Main-Linac" (RTML) section of the CLIC, to correct realistic static errors such as element position offsets, angle, magnetic strength and dynamic magnetic centre shifts. The correction strategy is proved to be very effective and leads to a relaxation of the pre-alignment tolerances for the component installation in the tunnel. This is the first time such a large scale and complex lattice has been corrected to match the design budgets. The techniques proposed could be applied to similarly sized facilities, such as the International Linear Collider, where a similar RTML section is used, or free-electron lasers, which, being equipped with linacs and bunch compressors, present challenges similar to those of the CLIC RTML. Moreover, a new technique is investigated for the emittance tuning procedure: the direct measurement of the interactions between the beams and a set of a few consecutive laser wires. The speed of this technique can be faster comparing to the traditional techniques based on emittance reconstructed from beam size measurements at several positions.
机译:紧凑的线性撞机(Clic)是一个未来的多TEV撞机,用于大型Hadron Collifer Era。它具有高梯度的加速和超低偏离,实现其高碰撞能量和峰值亮度的雄心勃勃的目标。基于光束的对准(BBA)技术是Clic的强制性,以将来自阻尼环的超低发射率保持在交互点。在本文中,对CLIC的整个27公里长的“环到主 - LINAC”(RTML)部分进行了对BBA技术的详细研究,以校正逼真的静态误差,例如元件位置偏移,角度,磁强度和动态磁力中心换档。校正策略被证明是非常有效的,并导致放松隧道中的元件安装的预先准合公差。这是第一次如此大规模和复杂的格子纠正以符合设计预算。所提出的技术可以应用于类似尺寸的设施,例如使用类似的RTML部分,或者自由电子激光器,或者配备有LinaCS和束压缩机的自由电激光器,其挑战类似于Clic的挑战RTML。此外,研究了一种新的技术,用于发射调谐过程:直接测量光束和一组连续的激光线之间的相互作用。与基于在多个位置的光束尺寸测量中重建的可发射率的传统技术,这种技术的速度可以更快地比较。

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