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The U/Th production ratio from extended independent model

机译:扩展独立模型的U / Th生产比率

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The Meyer and Schramm (M&S) independent model formalism is developed to determine the production ratio of actinide chronometers in the nucleosynthesis era of the Galaxy formation. The production ratio of U/Th is calculated, considering the non-radioactive mass reduction rate of chronometers together with a new production of r-process nuclides over the time interval between the last r-process event and the solidification of meteorites. In the first approach, we considered two extra terms rather than M&S formalism, and the average U/Th production ratio over the duration of nucleosynthesis in stars and supernovas was measured to be 0.5378 +/- 0.00050.0006 and 0.5942-0.0474+0.0491. Considering only one extra term rather than M&S original model led to the average production ratio of 0.5603 +/- 0.0007 and 0.5994 +/- 0.04720.0487. The calculated results from both approaches are compatible with those of used stellar models and chronometric methods. The advantages of our extended model are in precise determining of actinides production ratios and evaluating a narrow down range for the Galaxy age rather than M&S formalism.
机译:Meyer和Schramm(M&S)独立模型形式主义是开发的,以确定无核酸核酸核心的形成率的半胱氨酸形成时代的生产比率。计算U / Th的生产比率,考虑到时计数器的非放射性质量降低率以及在最后一次R处理事件之间的时间间隔和陨石凝固之间的时间间隔内的新生产。在第一种方法中,我们考虑了两种额外的术语而不是M&S形式主义,并且测量了恒星和超新核酸内核持续时间的平均U / Th生产比率为0.5378 +/- 0.00050.0006和0.5942-0.0474 + 0.0491。仅考虑一个额外的术语而不是M&S原始模型导致平均生产率为0.5603 +/- 0.0007和0.5994 +/- 0.04720.0487。两种方法的计算结果与使用的恒星模型和编程方法兼容。我们扩展模型的优点是精确确定散落度生产比率,并评估银河系年龄而不是M&S形式主义的狭窄范围。

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