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Efficient energy conversion from laser to proton beam in a laser-foil interaction

机译:激光箔相互作用中从激光到质子束的有效能量转换

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Demonstrated is a remarkable improvement on the energy conversion efficiency from laser to protons in a laser-foil interaction by particle simulations. The total laser-proton energy conversion efficiency becomes 16.7%, although a conventional plane foil target serves a rather low efficiency. In our previous study we found that Al multihole thin-foil target was efficient for the energy conversion from laser to protons [Y. Nodera and S. Kawata, Phys. Rev. E 78, 046401 (2008)], and the energy conversion efficiency was 9.3%. In our 2.5-dimensional particle-in-cell simulations the Al multihole structure is also employed, and the parameters of the Al multihole wing width and length are optimized in the paper. The present results clarify the roles of the target Al hole width and depth in the laser-proton energy conversion. The main physical reason for the enhancement of the conversion efficiency is a reduction of the laser reflection at the target surface area. The optimized multihole foil target provides a remarkable increase in the laser-proton energy conversion efficiency as shown above.
机译:通过粒子模拟,证明了在激光-箔相互作用中从激光到质子的能量转换效率有了显着提高。尽管常规的平面箔靶的效率相当低,但是总的激光-质子能量转换效率变为16.7%。在我们以前的研究中,我们发现Al多孔薄箔靶对于从激光到质子的能量转换是有效的。 Nodera和S. Kawata,物理学。 Rev. E 78,046401(2008)],能量转换效率为9.3%。在我们的2.5维单元格粒子模拟中,还采用了Al多孔结构,并对Al多孔翼的宽度和长度参数进行了优化。目前的结果阐明了目标Al孔的宽度和深度在激光质子能量转换中的作用。提高转换效率的主要物理原因是减少了目标表面积上的激光反射。如上所述,优化的多孔箔靶可显着提高激光-质子能量转换效率。

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