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Fundamental tests of antimatter gravitation with antihydrogen accelerators

Fundamental tests of antimatter gravitation with antihydrogen accelerators
用反氢加速器进行反物质引力的基础测试
批准号:
2587239
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --

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中文摘要
翻译
物理学中一个突出的重大挑战是理解物质和反物质之间的根本差异,这些差异给我们留下了一个主要由物质组成的宇宙。欧洲核子研究中心的阿尔法(反氢激光物理装置)实验试图解决这个问题,方法是对被捕获的反氢原子进行精确的原子物理测量,以确定与氢的等效测量结果的微小差异。这项合作正在建造下一代反氢陷阱Alpha-g,旨在测量反物质的引力。该项目的目标是设计和执行反氢原子的重力自由落体测量,以便直接测量反物质的重力加速度,作为弱等价原理的测试。这是一个跨学科的实验项目,基础横跨等离子体、原子和粒子物理。这是曼彻斯特大学的一个学生项目,大多数人将驻扎在瑞士日内瓦的欧洲核子研究中心。学生将设计和分析用于阿尔法-g的实验方案和诊断技术,旨在测量地球上反物质的重力加速度g。更具体地说,在学员开始时进行的初始测量需要在整个课程中获得更高的精度,对Alpha-g设备进行仔细的分析和开发,并进行相关的调试和测试:尤其是,重点围绕磁体电流控制、捕集系统、冷却管理和相应的改进。该项目的成功实现将需要实验努力以及开发用于测量和控制探头和实验中的背景磁场的诊断工具。粒子和场行为将使用GPT、OPIA、Ansys和COMSOL等软件进行建模。学生还将参加Alpha关于捕获反氢原子的一般实验计划,同时掌握整个实验的操作。该课程将使学生了解超高真空系统、光束和等离子体操纵技术、诊断方法、光谱学和激光技术及其数据分析和工具。最终,学生将在阿尔法机器的整个操作周期的结果中做出贡献
英文摘要
One of the outstanding grand challenges in physics is to understand the fundamental differences between matter and antimatter that have left us with a universe that is largely composed of matter. The ALPHA (Antihydrogen Laser Physics Apparatus) experiment at CERN seeks to address this question by performing precise atomic physics measurements on trapped antihydrogen atoms in order to identify minute differences with equivalent measurements in hydrogen. The collaboration is building ALPHA-g, the next generation of antihydrogen traps intended to measure antimatter gravitation.The studentship aims to design and perform gravitational free-fall measurements on antihydrogen atoms in order to directly measure antimatter gravitational acceleration as a test of the weak equivalence principle. This is an interdisciplinary experimental project with underpinnings spanning plasma, atomic and particle physics. It is a studentship with the University of Manchester where the majority would be based at CERN in Geneva, Switzerland. The student will design and analyse experimental protocol and diagnostic technique for use in ALPHA-g intended to measure the gravitational acceleration g of antimatter on Earth. More specifically, the initial measurements conducted at the beginning of the studentship will need to gain higher precision throughout the course with a careful analysis and development of the ALPHA-g apparatus with associated commissioning and testing: in particular, the focus revolves around the magnet current control, trapping systems, cooling management and respective improvements.The successful realisation of this project will require both experimental efforts as well as development of diagnostic tools for measuring and controlling the probe and background magnetic fields in the experiment. Particle and field behaviour will be modelled using software such as GPT, Opera, ANSYS and COMSOL.The student will also be expected to participate in ALPHA's general experimental programme with trapped antihydrogen atoms while mastering the operation of the full experiment. The involvement will approach the student to ultra-high vacuum systems, beam and plasma manipulation techniques, diagnostic approaches, spectroscopy and laser techniques as well as their data analysis and tools. Ultimately, the student will contribute in the results of the full operation cycle of the ALPHA machine
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Multistage,haplotype and functional tests-based FCAR 基因和IgA肾病相关关系研究
  • 批准号:
    30771013
  • 项目类别:
    面上项目
  • 资助金额:
    30.0万元
  • 批准年份:
    2007
  • 负责人:
    王一鸣
  • 依托单位: