论文标题

LHEC的能源恢复LINAC

An Energy Recovery Linac for the LHeC

论文作者

Bogacz, S. Alex, Holzer, Bernhard J., Osborne, John A.

论文摘要

LHEC提供了强烈的高能电子束与LHC碰撞。它代表了能源回收的LINAC(ERL)技术的最高能源应用,该技术越来越被认为是粒子物理发展开发的主要试点技术之一,因为它利用和刺激了超导RF技术的进步,并且会增加强度,同时保持功耗较低。 LHEC瞬时光度通过集成的光度目标确定。选择电子束能量以实现TEV CMS碰撞能量并实现竞争性搜索和精确的Higgs玻色子测量。壁拔功率已限制为100兆瓦。大约900 m长的两个超导linac相互放置,将通过电子加速8.3 GEV。这导致最终电子束能量在3-Turn跑道能量恢复Linac构型中约为50 GEV。

The LHeC provides an intense, high energy electron beam to collide with the LHC. It represents the highest energy application of energy recovery linac (ERL) technology which is increasingly recognized as one of the major pilot technologies for the development of particle physics because it utilizes and stimulates superconducting RF technology progress, and it increases intensity while keeping the power consumption low. The LHeC instantaneous luminosity is determined through the integrated luminosity goal. The electron beam energy is chosen to achieve TeV cms collision energy and enable competitive searches and precision Higgs boson measurements. The wall-plug power has been constrained to 100 MW. Two super-conducting linacs of about 900 m length, which are placed opposite to each other, accelerate the passing electrons by 8.3 GeV each. This leads to a final electron beam energy of about 50 GeV in a 3-turn racetrack energy recovery linac configuration.

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