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Fusion reactions initiated by laser-accelerated particle beams in a laser-produced plasma

机译:在激光产生的等离子体中由激光加速的粒子束引发的聚变反应

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The advent of high-intensity-pulsed laser technology enables the generation of extreme states of matter under conditions that are far from thermal equilibrium. This in turn could enable different approaches to generating energy from nuclear fusion. Relaxing the equilibrium requirement could widen the range of isotopes used in fusion fuels permitting cleaner and less hazardous reactions that do not produce high-energy neutrons. Here we propose and implement a means to drive fusion reactions between protons and boron-11 nuclei by colliding a laser-accelerated proton beam with a laser-generated boron plasma. We report proton-boron reaction rates that are orders of magnitude higher than those reported previously. Beyond fusion, our approach demonstrates a new means for exploring low-energy nuclear reactions such as those that occur in astrophysical plasmas and related environments.
机译:高强度脉冲激光技术的出现使得能够在远离热平衡的条件下产生极端的物质状态。反过来,这可能使采用不同方法从核聚变中产生能量成为可能。放宽平衡要求可以扩大聚变燃料中使用的同位素范围,从而实现更清洁,危害较小的反应,而不会产生高能中子。在这里,我们提出并实施一种手段,通过使激光加速的质子束与激光产生的硼等离子体碰撞,来驱动质子和11硼核之间的聚变反应。我们报告的质子-硼反应速率比以前报告的高几个数量级。除了融合以外,我们的方法还展示了探索低能核反应(如在天体等离子体和相关环境中发生的反应)的新方法。

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