期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Future for inertial-fusion energy in Europe:a roadmap
1
作者 Dimitri Batani Arnaud Colaitis +11 位作者 Fabrizio Consoli Colin N.Danson Leonida Antonio Gizzi Javier Honrubia Thomas Kühl Sebastien Le Pape Jean-Luc Miquel Jose Manuel Perlado R.H.H.Scott Michael Tatarakis Vladimir Tikhonchuk Luca Volpe 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2023年第6期162-192,共31页
The recent achievement of fusion ignition with laser-driven technologies at the National Ignition Facility sets a historic accomplishment in fusion energy research.This accomplishment paves the way for using laser ine... The recent achievement of fusion ignition with laser-driven technologies at the National Ignition Facility sets a historic accomplishment in fusion energy research.This accomplishment paves the way for using laser inertial fusion as a viable approach for future energy production.Europe has a unique opportunity to empower research in this field internationally,and the scientific community is eager to engage in this journey.We propose establishing a European programme on inertial-fusion energy with the mission to demonstrate laser-driven ignition in the direct-drive scheme and to develop pathway technologies for the commercial fusion reactor.The proposed roadmap is based on four complementary axes:(ⅰ)the physics of laser-plasma interaction and burning plasmas;(ⅱ)high-energy high repetition rate laser technology;(ⅲ)fusion reactor technology and materials;and(ⅳ)reinforcement of the laser fusion community by international education and training programmes.We foresee collaboration with universities,research centres and industry and establishing joint activities with the private sector involved in laser fusion.This project aims to stimulate a broad range of high-profile industrial developments in laser,plasma and radiation technologies along with the expected high-level socio-economic impact. 展开更多
关键词 education and training fusion reactor technology high-energy laser high repetition rate laser inertial confinement fusion laser-plasma interaction public-private partnership radiation resistant materials
原文传递
Inertial confinement fusion ignition achieved at the National Ignition Facility–an editorial
2
作者 C.N.Danson L.A.Gizzi 《High Power Laser Science and Engineering》 SCIE EI CAS CSCD 2023年第3期73-75,共3页
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.Thi... 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. 展开更多
关键词 inertial confinement fusion fusion ignition inertial fusion energy high power lasers
原文传递
Pulse fidelity in ultra-high-power(petawatt class)laser systems 被引量:1
3
作者 Colin Danson David Neely David Hillier 《High Power Laser Science and Engineering》 SCIE CAS 2014年第4期5-16,共12页
There are several petawatt-scale laser facilities around the world and the fidelity of the pulses to target is critical in achieving the highest focused intensities and the highest possible contrast. The United Kingdo... There are several petawatt-scale laser facilities around the world and the fidelity of the pulses to target is critical in achieving the highest focused intensities and the highest possible contrast. The United Kingdom has three such laser facilities which are currently open for access to the academic community: Orion at AWE, Aldermaston and Vulcan & Astra-Gemini at the Central Laser Facility(CLF), STFC(Science and Technology Facilities Council)Rutherford Appleton Laboratory(RAL). These facilities represent the two main classes of petawatt facilities: the mixed OPCPA/Nd:glass high-energy systems of Orion and Vulcan and the ultra-short-pulse Ti:Sapphire system of AstraGemini. Many of the techniques used to enhance and control the pulse generation and delivery to target have been pioneered on these facilities. In this paper, we present the system designs which make this possible and discuss the contrast enhancement schemes that have been implemented. 展开更多
关键词 PETAWATT laser CONTRAST WAVEFRONT correction plasma MIRROR
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部