首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Shell-model calculations of stellar weak interaction rates: II. Weak rates for nuclei in the mass range A=45-65 in supernovae environments
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Shell-model calculations of stellar weak interaction rates: II. Weak rates for nuclei in the mass range A=45-65 in supernovae environments

机译:恒星弱相互作用速率的壳模型计算:II。在超新星环境中,原子核的弱率在质量范围A = 45-65中

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Based on large-scale shell-model calculations we have determined the electron capture, positron capture and beta-decay rates for more than 100 nuclei in the mass range A = 45-65. The rates are given for densities rho Y-e = 10(7)-10(10) mol/cm(3) and temperatures T = 10(9)-10(10) K and hence are relevant for both types of supernovae (Type Ia and Type II). The shell-model electron capture rates are significantly smaller than currently assumed. For proton-to-baryon ratios Y-e = 0.42-0.46 mol/g, the beta-decay rates are faster than the electron capture rates during the core collapse of a massive star. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 45]
机译:基于大规模壳模型计算,我们确定了质量范围A = 45-65中100多个原子核的电子捕获,正电子捕获和β衰变速率。给出的速率为密度rho = 10(7)-10(10)mol / cm(3)和温度T = 10(9)-10(10)K,因此与两种类型的超新星有关(Ia型)和II型)。壳模型的电子捕获速率明显小于当前假设的速率。对于质子与重子的比率Y-e = 0.42-0.46 mol / g,β衰变速率快于大质量恒星核心塌陷期间的电子捕获速率。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:45]

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