High current ionic flows via ultra-fast lasers for fusion applications

High current ionic flows via ultra-fast lasers for fusion applications
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通过超快激光器产生高电流离子流,用于聚变应用

DOI:
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发表时间:
2022
期刊:
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影响因子:
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通讯作者:
G. Korn
G. Korn
中科院分区:
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文献类型:
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作者:
H. Ruhl;G. Korn

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本文介绍了一种新的离子加速器概念。加速器是纳米结构的,可以由一系列材料组成。它能够在中等离子能量下产生大的离子电流。纳米结构可以针对加速器进行定制,从而能够以非常高的效率驱动离子束。该加速器由激光阵列供电,该阵列由具有超短强激光脉冲的$100\、\Text{J}$范围内的许多重复且高效的激光器组成。将纳米结构和所提出的超短脉冲激光相结合,可以为聚变应用带来新的时空控制和能源效率水平。
In the present paper we introduce a new accelerator concept for ions. The accelerator is nano-structured and can consist of a range of materials. It is capable of generating large ionic currents at moderate ion energies. The nano-structures can be tailored towards the accelerator thus being capable of driving ion beams with very high efficiency. The accelerator is powered by laser arrays consisting of many repetitive and efficient lasers in the $100 \, \text{J}$ range with ultra-short intense laser pulses. Combining nano-structures and the proposed ultra-short pulse lasers can lead to new levels of spatio-temporal control and energy efficiency for fusion applications.
E.T.A.霍夫曼和流派的多样性
DOI: --
发表时间: 2012
期刊: ヴェルボンド
影响因子: --
作者:
玉井智之・別役透・中村哲之・藤田和生;Satoshi Fujii;Satoshi Fujii;Satoshi Fujii (藤井俊);Satoshi Fujii (藤井俊);藤井俊;藤井俊;藤井俊;藤井俊;藤井俊;藤井俊;藤井俊;藤井俊;藤井俊;藤井俊;桐村豪文;桐村豪文;桐村豪文;桐村豪文・田村徳子・吉井勝彦・吉岡大・金子勉;桐村豪文;桐村豪文;桐村豪文;桐村豪文;榎並孝司;榎並孝司;片山耕二郎
通讯作者: 片山耕二郎