论文标题

热核融合通过在磁化过度的等离子体中塌陷的站立惠斯勒波触发

Thermonuclear Fusion Triggered by Collapsing Standing Whistler Waves in Magnetized Overdense Plasmas

论文作者

Sano, Takayoshi, Fujioka, Shinsuke, Mori, Yoshitaka, Mima, Kunioki, Sentoku, Yasuhiko

论文摘要

由站立惠斯勒波引发的热融合等离子体通过二维和一维粒子中的模拟来数值研究。当由于离子等离子体波破裂而导致的站立惠斯勒波崩溃时,电磁波的能量直接传输到离子动能。在这里,我们发现,即使在多二维物种靶标,例如氘 - 铁(DT)ICES和固体氨(H $ _6 $ _6 $ bn)的多维模拟中,站立惠斯勒波的加热也是运行的。对离子的能量转化效率变得高达注射激光能量的15%,这显着取决于目标厚度和激光脉冲持续时间。如果选择了适当的激光 - 血浆条件,则离子温度可能达到几十keV或更高的keV。该方法产生的DT融合等离子体必须作为有效的中子来源有用。我们的数值模拟表明,中子产生效率超过10 $^9 $ n/j,这超出了最新的激光实验的当前成就。站立的惠斯勒波加热将扩大实验性的可能性,以替代磁性激光融合的替代点火设计,以及更困难的融合反应,包括动型质子质子 - 波罗龙反应。

Thermal fusion plasmas initiated by standing whistler waves are investigated numerically by two- and one-dimensional Particle-in-Cell simulations. When a standing whistler wave collapses due to the wave breaking of ion plasma waves, the energy of the electromagnetic waves transfers directly to the ion kinetic energy. Here we find that the ion heating by the standing whistler wave is operational even in multi-dimensional simulations of multi-ion species targets, such as deuterium-tritium (DT) ices and solid ammonia borane (H$_6$BN). The energy conversion efficiency to ions becomes as high as 15% of the injected laser energy, which depends significantly on the target thickness and laser pulse duration. The ion temperature could reach a few tens of keV or much higher if appropriate laser-plasma conditions are selected. DT fusion plasmas generated by this method must be useful as efficient neutron sources. Our numerical simulations suggest that the neutron generation efficiency exceeds 10$^9$ n/J per steradian, which is beyond the current achievements of the state-of-the-art laser experiments. The standing whistler wave heating would expand the experimental possibility for an alternative ignition design of magnetically confined laser fusion, and also for more difficult fusion reactions including the aneutronic proton-boron reaction.

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