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Relativistic laser-plasma physics and advanced plasma optics

Relativistic laser-plasma physics and advanced plasma optics
相对论激光等离子体物理学和先进等离子体光学
批准号:
2189469
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:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --

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中文摘要
翻译
由于其紧凑的性质和独特的性质,强激光驱动的粒子和辐射源在许多科学和社会领域的应用具有变革的潜力。这种使能技术发展的核心是利用等离子体电子与激光相互作用时产生的非线性光学现象获得相对论速度。这些物理过程将主导下一代激光设备的光-物质相互作用,例如极端光基础设施(ELI)。该项目包括一个实验和耦合模拟程序,以研究相对论性激光等离子体相互作用现象,以及它们在控制带电粒子和辐射产生方面的应用,在超薄箔靶中,由超强激光脉冲照射。它还将涉及开发和应用等离子体光学的先进设计,包括椭球面反射表面,以紧密聚焦相对强烈的激光。该项目利用了我们团队最近的突破,包括超薄箔的相对论透明性(Nature Physics 12,505(2016))及其在操纵等离子体粒子运动中的应用(Nature Communications, 7,12891(2016))和加速物理学(Nature Communications, At press(2018))。它将探索支撑相对论等离子体光子学发展的物理学,以实现超高强度激光脉冲的可调谐空间、时间和偏振控制。该项目包括在牛津郡中央激光设施使用新的350TW SCAPA物理激光器和外部激光器进行实验研究。它还包括使用ARCHER和ARCHIE-WeSt高性能计算机模拟强烈的激光等离子体相互作用。目标是:1。研究相对论性等离子体孔径对超强激光特性的影响。研究在相对透明目标中控制场演化和粒子加速的潜力。
英文摘要
Due to their compact nature and unique properties, intense laser-driven particle and radiation sources have transformative potential for application in many areas of science and society. Central to the development of this enabling technology is the exploitation of nonlinear optical phenomena that are produced when plasma electrons interacting with the laser gain relativistic velocities. These physical processes will dominate light-matter interactions at next-generation laser facilities, e.g. the extreme light infrastructure (ELI).The project involves a programme of experiments and coupled simulations to investigate relativistic laser-plasma interaction phenomena, and their use in controlling charged particle and radiation generation, in ultrathin foil targets irradiated by ultraintense laser pulses. It will also involve the development and application of advanced designs for plasma optics, including ellipsoidal reflective surfaces to tightly focus relativistically intense laser light. The project exploits recent breakthroughs by our team, including relativistic transparency in ultrathin foils (Nature Physics 12, 505 (2016)) and its use in manipulating plasma particle motion (Nature Communications, 7, 12891 (2016)) and acceleration physics (Nature Communications, At press (2018)). It will explore the physics underpinning the development of relativistic plasma photonics, to enable tuneable spatial, temporal and polarisation control of laser pulses at ultrahigh intensity. The project involves experimental investigations using the new 350TW SCAPA laser in Physics and external lasers at the Central Laser Facility in Oxfordshire. It also involves simulations of intense laser-plasma interactions using the ARCHER and ARCHIE-WeSt high performance computers.The objectives are:1. Investigate the influence of a relativistic plasma aperture on the properties of ultraintense laser light2. Investigate the potential to control field evolution and particle acceleration in relativistically transparent targets.
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国内基金
海外基金
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  • 批准号:
    60508013
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    23.0万元
  • 批准年份:
    2005
  • 负责人:
    薄勇
  • 依托单位: