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| 1 | Inertial confinement fusion and prospects for power production显示文摘As our understanding of the environmental impact of fossil fuel based energy production increases, it is becoming clear that the world needs a new energy solution to meet the challenges of the future. A transformation is required in the energy market to meet the need for low carbon, sustainable, affordable generation matched with security of supply. In the short term, an increasing contribution from renewable sources may provide a solution in some locations. In the longer term,low carbon, sustainable solutions must be developed to meet base load energy demand, if the world is to avoid an ever increasing energy gap and the attendant political instabilities. Laser-driven inertial fusion energy(IFE) may offer such a solution. | C.B.Edwards C.N.Danson | 2015 | High Power Laser Science and Engineering2015,3,1: | 3 |
| 2 | 使用二元相位菲涅尔波带片产生轴向线聚焦显示文摘介绍了一种全新的轴向线聚焦方案 .采用菲涅尔波带片 ,在实验中产生了沿轴向长为 5mm ,宽 10 0 μm的线聚焦 .光学测量表明 ,线聚焦轴向强度分布比较均匀 .这些参数基本上可以满足激光等离子体实验的要求 . | 李玉同 张杰 鲁欣 金展 D.A.Pepler C.N.Danson | 2005 | 物理学报2005,54,5: | 2 |
| 3 | An evaluation of sustainability and societal impact of high-power laser and fusion technologies:a case for a new European research infrastructure显示文摘Fusion energy research is delivering impressive new results emerging from different infrastructures and industrial devices evolving rapidly from ideas to proof-of-principle demonstration and aiming at the conceptual design of reactors for the production of electricity.A major milestone has recently been announced in laser fusion by the Lawrence Livermore National Laboratory and is giving new thrust to laser-fusion energy research worldwide.Here we discuss how these circumstances strongly suggest the need for a European intermediate-energy facility dedicated to the physics and technology of laser-fusion ignition,the physics of fusion materials and advanced technologies for high-repetitionrate,high-average-power broadband lasers.We believe that the participation of the broader scientific community and the increased engagement of industry,in partnership with research and academic institutions,make most timely the construction of this infrastructure of extreme scientific attractiveness. | S.Atzeni D.Batani C.N.Danson L.A.Gizzi M.Perlado M.Tatarakis V.Tikhonchuk L.Volpe | 2021 | High Power Laser Science and Engineering2021,9,4: | 1 |
| 4 | Target fabrication for the POLAR experiment on the Orion laser facility显示文摘This article describes the fabrication of a suite of laser targets by the Target Fabrication group in the Central Laser Facility(CLF), STFC Rutherford Appleton Laboratory for the first academic-access experiment on the Orion laser facility(Hopps et al., Appl. Opt. 52, 3597–3601(2013)) at Atomic Weapons Establishment(AWE). This experiment, part of the POLAR project(Falize et al., Astrophys. Space Sci. 336, 81–85(2011); Busschaert et al., New J. Phys. 15, 035020(2013)),studied conditions relevant to the radiation-hydrodynamic processes occurring in a remarkable class of astrophysical star systems known as magnetic cataclysmic variables. A large number of complex fabrication technologies and research and development activities were required to field a total of 80 high-specification targets. Target design and fabrication procedures are described and initial alignment and characterization data are discussed. | C.Spindloe D.Wyatt D.Haddock I.East J.E.Cross C.N.Danson E.Falize J.M.Foster M.Koenig G.Gregori | 2015 | High Power Laser Science and Engineering2015,3,1: | 0 |
| 5 | Inertial confinement fusion ignition achieved at the National Ignition Facility–an editorial显示文摘On behalf of all at High Power Laser Science and Engineering we would like to congratulate the team at Lawrence Livermore National Laboratory(LLNL)on demonstrating fusion ignition at the National Ignition Facility.This major scientific achievement was realized on the 5 December 2022 at the LLNL and announced at a press briefing on the 13 December 2022 by the United States Department of Energy’s National Nuclear Security Administration.This was a historic milestone and the culmination of decades of effort. | C.N.Danson L.A.Gizzi | 2023 | High Power Laser Science and Engineering2023,11,3: | 0 |
| 6 | Design and fabrication of gas cell targets for laboratory astrophysics experiments on the Orion high-power laser facility显示文摘This paper describes the design and fabrication of a range of ‘gas cell' microtargets produced by the Target Fabrication Group in the Central Laser Facility(CLF) for academic access experiments on the Orion laser facility at the Atomic Weapons Establishment(AWE). The experiments were carried out by an academic consortium led by Imperial College London. The underlying target methodology was an evolution of a range of targets used for experiments on radiative shocks and involved the fabrication of a precision machined cell containing a number of apertures for interaction foils or diagnostic windows. The interior of the cell was gas-filled before laser irradiation. This paper details the assembly processes, thin film requirements and micro-machining processes needed to produce the targets. Also described is the implementation of a gas-fill system to produce targets that are filled to a pressure of 0.1–1 bar. The paper discusses the challenges that are posed by such a target. | C.Spindloe D.Wyatt S.Astbury G.F.Swadling T.Clayson C.Stehlé J.M.Foster E.Gumbrell R.Charles C.N.Danson P.Brummitt F.Suzuki-Vidal | 2017 | High Power Laser Science and Engineering2017,5,3: | 0 |