激光器
飞秒
镜头(地质)
等离子体
物理
电子
光学
阴极射线
联轴节(管道)
分歧(语言学)
电子光学
梁(结构)
超短脉冲
原子物理学
材料科学
核物理学
哲学
语言学
冶金
作者
C. Thaury,E. Guillaume,A. Döpp,Rémi Lehe,A. Lifschitz,K. Ta Phuoc,J. Gautier,J-P. Goddet,A. Tafzi,A. Flacco,F. Tissandier,S. Sebban,A. Rousse,V. Malka
摘要
Laser-plasma technology promises a drastic reduction of the size of high energy electron accelerators. It could make free electron lasers available to a broad scientific community, and push further the limits of electron accelerators for high energy physics. Furthermore the unique femtosecond nature of the source makes it a promising tool for the study of ultra-fast phenomena. However, applications are hindered by the lack of suitable lens to transport this kind of high-current electron beams, mainly due to their divergence. Here we show that this issue can be solved by using a laser-plasma lens, in which the field gradients are five order of magnitude larger than in conventional optics. We demonstrate a reduction of the divergence by nearly a factor of three, which should allow for an efficient coupling of the beam with a conventional beam transport line.
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