首页> 外文期刊>International journal of green energy >LATTICE SQUEEZED NUCLEAR REACTION (LSNR) OF POWER-CELL FOR NANOSCOPIC INVESTIGATIONS USING ION BEAM INJECTIONS
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LATTICE SQUEEZED NUCLEAR REACTION (LSNR) OF POWER-CELL FOR NANOSCOPIC INVESTIGATIONS USING ION BEAM INJECTIONS

机译:离子束注入用于纳秒研究的晶胞的晶格压缩核反应(LSNR)

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摘要

The lattice squeezed nuclear reaction (LSNR) has been investigated for power-cell analysis, which originated from low energy nuclear reaction (LENR). This nuclear reaction, in the room temperature, can give an empirical scenario. The experiment of ion beam injection is investigated for theoretical analysis by using a computational simulation. Regarding the theory of Bethe, the tabletop facility is explained instead of star or solar conditions. There are simulations using molecular behaviors, which in this study show the most probable energy for the vacancy on 10 keV. Sandwich-type structures with particular elements (graphite, Ca, and Ni) are examined, which are generally used for the possible power-cell manufacturing. Conventional palladium-related experiment can be exchanged with a room temperature nuclear reaction as a power-cell.
机译:晶格压缩核反应(LSNR)已被研究用于动力电池分析,其起源于低能核反应(LENR)。在室温下,这种核反应可以给出经验性的假设。通过计算仿真研究了离子束注入实验,以进行理论分析。关于Bethe的理论,将说明台式设备而不是星空条件。有一些使用分子行为的模拟,在这项研究中显示了10 keV上空位的最可能能量。研究了具有特定元素(石墨,Ca和Ni)的三明治型结构,这些结构通常用于可能的动力电池制造。可以将与钯有关的常规实验与室温核反应作为动力电池进行交换。

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