首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Laser-induced fusion in ultra-dense deuterium D(-l): Optimizing MeV particle emission by carrier material selection
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Laser-induced fusion in ultra-dense deuterium D(-l): Optimizing MeV particle emission by carrier material selection

机译:超致密氘D(-l)中的激光诱导融合:通过选择载体材料优化MeV粒子发射

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摘要

Power generation by laser-induced nuclear fusion in ultra-dense deuterium D(-1) requires that the carrier material interacts correctly with D(-1) prior to the laser pulse and also during the laser pulse. In previous studies, the interaction between the superfluid D(-1) layer and various carrier materials prior to the laser pulse has been investigated. It was shown that organic polymer materials do not give a condensed D(-1) layer. Metal surfaces carry thicker D(-1) layers useful for fusion. Here, the interaction between the carrier and the nuclear fusion process is investigated by observing the MeV particle emission (e.g. 14 MeV protons) using twelve different carrier materials and two different methods of detection. Several factors have been analyzed for the performance of the carrier materials: the hardness and the melting point of the material, and the chemical properties of the surface layer. The best performance is found for the high-melting metals Ti and Ta, but also Cu performs well as carrier despite its low melting point. The unexpectedly meager performance of Ni and Ir may be due to their catalytic activity towards hydrogen which may give atomic association to deuterium molecules at the low D_2 pressure used.
机译:在超致密氘D(-1)中通过激光诱导的核聚变发电需要在激光脉冲之前以及激光脉冲期间,载体材料与D(-1)正确相互作用。在以前的研究中,已经研究了超流体D(-1)层与各种载体材料在激光脉冲之前的相互作用。结果表明,有机聚合物材料不会产生缩合的D(-1)层。金属表面带有用于熔合的较厚的D(-1)层。在这里,通过使用十二种不同的载体材料和两种不同的检测方法观察MeV粒子发射(例如14 MeV质子)来研究载体与核聚变过程之间的相互作用。分析了载体材料性能的几个因素:材料的硬度和熔点以及表面层的化学性质。对于高熔点金属Ti和Ta,发现了最佳性能,但尽管熔点低,但Cu的载流子性能也很好。 Ni和Ir出乎意料的微不足道的性能可能是由于它们对氢的催化活性,在低D_2压力下,它可能与氘分子发生原子缔合。

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