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Muon catalyzed fusion dynamics in solid heterogeneous H/D/T mixture and its comparison with solid homogeneous D/T system

机译:固体非均质H / D / T混合物中Muon催化的聚变动力学及其与固体均相D / T系统的比较

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摘要

The Ramsauer-Townsend effect in hydrogen is used to force the muonic tritium in suggested heterogeneous solid hydrogen-deuterium-tritium (H/D/T) multilayer system to provide resonance muonic deuterium-tritium molecule formation. The written coupled linear point dynamical equations for the suggested system are solved by Monte-Carlo method using "Lsode" computer code. The obtained results for the optimum layer thicknesses and tritium concentration are compared with the results of solid homogeneous deuterium-tritium system in the same physical condition (temperature, density and tritium concentration). It is shown that for the same physical conditions, the muon cycling coefficient of two isotopes of deuterium-tritium (D/T) has only 3% muon cycling coefficient of suggested heterogeneous solid forced H/D/T fusion system. It is shown that with very little tritium concentration (c(t) = 0.005) the obtained muon cycling rate and coefficient axe similar to 120 mus(-1) and 165 respectively. [References: 22]
机译:氢气中的Ramsauer-Townsend效应用于在建议的异质固体氢-氘-tri(H / D / T)多层系统中强迫离子onic,以提供共振的离子氘-tri分子形成。所建议系统的书面耦合线性点动力学方程是使用“ Lsode”计算机代码通过蒙特卡洛方法求解的。将获得的最佳层厚度和obtained浓度的结果与相同物理条件(温度,密度和tri浓度)下固态均相氘-体系的结果进行比较。结果表明,在相同的物理条件下,氘-of(D / T)两种同位素的μon循环系数仅为建议的非均质固相H / D / T融合系统的μon循环系数的3%。结果表明,在极低的(浓度下(c(t)= 0.005),获得的μ子循环速率和系数ax分别类似于120 mus(-1)和165。 [参考:22]

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