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Cryogenic hydrogen targets for proton beam generation with ultra-intense lasers.

机译:用超强激光器的质子束产生的低温氢靶。

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The recent emergence of commercial, high repetition rate, intense lasers opens up new prospects for applications. Of particular interest is the production of energetic proton beams through the interaction of an intense laser with a hydrogen target: this beam can then be used e.g. for proton therapy (cancer treatment), or for neutron production through interaction of the proton or deuteron beam with a secondary target. If physical processes involved in the production of protons have started to receive satisfactory explanations, the reliable production of protons at high repetition rate without any debris is still an issue. In this context, SBT has developed different cryostats to generate thin ribbons of hydrogen through extrusion of solid hydrogen, and optimize and predict the conditions for extrusion. In this article, we show, how thin hydrogen ribbons are produced, and high energy proton beams are generated. A few results are given, and future plans are discussed
机译:最近的商业,高重复率,激光激光激光的出现开辟了申请的新前景。特别令人兴趣的是通过将激光与氢靶的相互作用的相互作用来产生能量质子束:然后可以使用该光束。对于质子疗法(癌症处理),或通过具有次要靶的质子或氘梁的相互作用来产生中子生产。如果涉及质子生产的物理过程已经开始接受令人满意的解释,则在没有任何碎片的情况下,在高重复率下的质子的可靠性生产仍然是一个问题。在这种情况下,SBT通过挤出固体氢气产生了不同的低温恒温器,以产生氢气的薄带,并优化和预测挤出条件。在本文中,我们展示了如何产生薄氢丝带,并且产生高能量质子束。给出了一些结果,并讨论了未来的计划

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