Development of Electro-Optic Beam Position Monitors for the High Luminosity Large Hadron Collider
Development of Electro-Optic Beam Position Monitors for the High Luminosity Large Hadron Collider
批准号:
2782220
负责人:
金额:
$0.0万
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --
中文摘要
高亮度大型强子对撞机是欧洲核子研究中心的一个主要加速器升级,它将把ATLAS和CMS实验的亮度提高一个数量级。此次升级将使人们能够寻找新的稀有粒子,并对粒子物理学的标准模型进行精确测量。HL-LHC将通过将质子束更紧密地聚焦在相互作用点,增加束流和蟹状旋转聚束以最大化碰撞束之间的几何重叠来实现这种亮度增加。优化HL-LHC的蟹状腔的性能需要具有挑战性的新仪器,可以测量以接近光速通过的1 ns长质子束团的横向形状。为了应对这一令人兴奋的挑战,Stephen吉布森教授领导了CERN束流仪器组与伦敦大学皇家霍洛威(RHUL)之间的英国合作,开发新型电光束流位置测量仪(EO-BPM)。其目的是使用具有皮秒范围内的时间响应的电光晶体,以实现对通过的相对论性聚束的超快光学响应。博士候选人将加入这个CERN-RHUL合作实验计划,开发用于CERN旗舰加速器LHC测试的电光BPM。博士职位将设在伦敦大学皇家霍洛威学院,学生将在那里接受初步培训,在皇家霍洛威的激光室和洁净室进行实验台测试,并进行相对论束的电磁模拟,电光响应和发展超快光学检测技术。第一年,学生还将参加牛津大学的加速器物理学讲座,这是约翰亚当斯加速器科学研究所提供的培训的一部分。在英国接受初步培训后,学生将前往欧洲核子研究中心参加SPS加速器原型的操作束流测试。学生有机会在LHC运行III期间从EO-BPM设备获取和分析数据,目的是验证这种在HL-LHC部署这些新设备的新方法。在成功演示之后,预计将发表结果并参加国际会议。学生将加入RHUL的友好团队,并从Stephen吉布森教授的直接监督中受益,并与CERN的团队合作。博士候选人还将受益于约翰亚当斯加速器科学研究所更广泛的支持和培训网络,该研究所是英国先进和新颖加速器技术的卓越中心,提供加速器技术的专业知识,研究,开发和培训,并促进科学和社会的先进加速器应用。
英文摘要
The High Luminosity Large Hadron Collider is a major accelerator upgrade at CERN that will increase the luminosity delivered to the ATLAS and CMS experiments by an order of magnitude. The upgrade will enable the search for new, rare particles and precision measurements of the standard model of particle physics. The HL-LHC will achieve this luminosity increase by a combination of focusing the proton beams more tightly at the interaction points, increasing the beam current and crab-rotating the bunches to maximise the geometric overlap between the colliding beams. Optimising the performance of the crab-cavities at the HL-LHC requires challenging new instrumentation that can measure the transverse shape of a 1ns long proton bunch passing by at nearly the speed of light.To address this exciting challenge, Prof Stephen Gibson leads the UK collaboration between the CERN Beam Instrumentation group and Royal Holloway, University of London (RHUL) to develop novel Electro-Optic Beam Position Monitors (EO-BPM). The aim is to use electro-optical crystals that have a time response in the picosecond range to enable an ultra-fast optical response to the passing relativistic bunch. The PhD candidate will join this CERN-RHUL collaborative experimental program to develop electro-optical BPMs for tests at CERN's flagship accelerator, the LHC.The PhD position will be based at Royal Holloway, University of London, where the student will be initially trained to perform experimental bench tests in laser rooms and clean rooms at Royal Holloway, and to perform electromagnetic simulations of the relativistic bunch, the electro-optic response and develop ultrafast optical detection techniques. The student will also attend lectures in accelerator physics at the University of Oxford during the first year, as part of the training provided by the John Adams Institute for Accelerator Science.After the initial training in the UK, the student will move to CERN to participate in operational beam tests of the prototype at the SPS accelerator. The student have the opportunity to acquire and analyse data from the EO-BPM device during Run-III of the LHC, with the aim of validating this new method for deployment of these new devices at the HL-LHC. Following successful demonstration, publications of the results and participation in international conferences is expected.The student would join a friendly team at RHUL and benefit from the direct supervision of Prof. Stephen Gibson, and collaborate with the team at CERN. The PhD candidate would also benefit from the wider support and training network of the John Adams Institute for accelerator science, a centre of excellence in the UK for advanced and novel accelerator technology, providing expertise, research, development and training in accelerator techniques, and promoting advanced accelerator applications in science and society.
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国内基金
海外基金
蒽醌/石墨烯纳米复合材料电极的电催化氧还原性能及其在异相electro-Fenton-like体系中的应用研究
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批准号:21177017
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项目类别:面上项目
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资助金额:60.0万元
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批准年份:2011
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负责人:张国权
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依托单位: