4.8 Article

A laser-plasma accelerator producing monoenergetic electron beams

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NATURE
卷 431, 期 7008, 页码 541-544

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NATURE PUBLISHING GROUP
DOI: 10.1038/nature02963

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Particle accelerators are used in a wide variety of fields, ranging from medicine and biology to high-energy physics. The accelerating fields in conventional accelerators are limited to a few tens of MeV m(-1), owing to material breakdown at the walls of the structure. Thus, the production of energetic particle beams currently requires large-scale accelerators and expensive infrastructures. Laser - plasma accelerators(1) have been proposed as a next generation of compact accelerators because of the huge electric fields they can sustain(2-5) (> 100 GeV m(-1)). However, it has been difficult to use them efficiently for applications because they have produced poor-quality particle beams with large energy spreads(2-10), owing to a randomization of electrons in phase space. Here we demonstrate that this randomization can be suppressed and that the quality of the electron beams can be dramatically enhanced. Within a length of 3 mm, the laser drives a plasma bubble(11) that traps and accelerates plasma electrons. The resulting electron beam is extremely collimated and quasi-monoenergetic, with a high charge of 0.5 nC at 170 MeV.

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