NUCLEAR PRODUCTS AND THEIR TIME DEPENDENCE INDUCED BY CONTINUOUS DIFFUSION OF DEUTERIUM THROUGH MULTI-LAYER PALLADIUM CONTAINING LOW WORK FUNCTION MATERIAL
NUCLEAR PRODUCTS AND THEIR TIME DEPENDENCE INDUCED BY CONTINUOUS DIFFUSION OF DEUTERIUM THROUGH MULTI-LAYER PALLADIUM CONTAINING LOW WORK FUNCTION MATERIAL
复制标题
氘通过低功函数材料多层钯连续扩散引起的核产物及其时间依赖性
DOI:
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发表时间:
2005
期刊:
影响因子:
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通讯作者:
M. Sakano
中科院分区:
文献类型:
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作者:
Y. Iwamura;T. Itoh;M. Sakano
Two kinds of experimental methods have been designed to induce nuclear reactions in the Pd-D system. One is the D2 gas diffusion method, and the other is the electrolysis diffusion method. A common feature of the methods is to cause continuous diffusion of deuterium through a multi-layer Pd that contains low work function material (CaO, TiC, YzOs, etc.). Time dependence of nuclear products (Mg, Si, S, F, Al) were observed by the D2 gas diffusion method, in which the products were analyzed WITHOUT taking the multi-layer Pd out of the apparatus. The time dependence of the products was reproduced qualitatively. The S/S ratio of the products was one order larger than that of natural abundance. Fe isotope ratio anomaly of the multi-layer Pd obtained by the electrolysis diffusion method was confirmed by SIMS and TOF-SIMS. Si powder products detected after electrolysis amounted to 0.057g, and its isotopic composition was anomalous.