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Conceptual Design of a Beam line for Post-Collision extraction and diagnostics at the multi-TeV Compact Linear Collider

机译:多TeV紧凑型线性对撞机用于碰撞后提取和诊断的光束线的概念设计

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摘要

Strong beam-beam effects at the interaction point of a high-energy e+e- linear collider such as the Compact Linear Collider (CLIC) lead to an emittance growth for the outgoing beams, as well as to the production of beamstrahlung photons and e+e- coherent pairs. In this paper, we present a conceptual design of a 150 m long post-collision extraction line for the CLIC machine at 3 TeV, which separates the various components of the outgoing beam using a vertical magnetic chicane, before transporting them to their respective dump. In addition, detailed studies are performed in order to compute the power losses along the CLIC post-collision line. For the vacuum window at the exit of the post-collision line, we propose a thick (1.5 cm) layer of carbon-carbon composite, with a thin (0.2 mm) aluminum leak-tight foil. The stress levels in this exit window are estimated. Finally, we discuss the use of diagnostics along the post-collision line for monitoring and improving the quality of the e+e- collisions and, in turn, the luminosity of the CLIC machine.
机译:在高能e + e-线性对撞机(如紧凑型线性对撞机(CLIC))的相互作用点处,强烈的束流效应导致射出光束的发射率增加,并产生束致发光光子和e + e-相干对。在本文中,我们为3 TeV的CLIC机器提供了一条150 m长的碰撞后提取线的概念设计,该线将使用垂直的磁锥分离出射束的各个组成部分,然后再将它们分别运输到各自的垃​​圾场。此外,进行了详细的研究,以计算沿CLIC碰撞后线的功率损耗。对于后碰撞线出口处的真空窗口,我们建议使用厚(1.5厘米)的碳-碳复合材料层和薄(0.2毫米)的铝防漏箔。估计此退出窗口中的应力水平。最后,我们讨论了沿碰撞后路线使用诊断程序以监视和改善e + e碰撞的质量以及CLIC机器的发光度。

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