首页> 外文期刊>The Astrophysical journal >REACTION RATES OF 64Ge(p,γ)65As AND 65As(p,γ)66Se AND THE EXTENT OF NUCLEOSYNTHESIS IN TYPE I X-RAY BURSTS
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REACTION RATES OF 64Ge(p,γ)65As AND 65As(p,γ)66Se AND THE EXTENT OF NUCLEOSYNTHESIS IN TYPE I X-RAY BURSTS

机译:I型X射线爆裂中64Ge(p,γ)65As和65As(p,γ)66Se的反应速率及核合成范围

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The extent of nucleosynthesis in models of type I X-ray bursts (XRBs) and the associated impact on the energy released in these explosive events are sensitive to nuclear masses and reaction rates around the 64Ge waiting point. Using the well known mass of 64Ge, the recently measured 65As mass, and large-scale shell model calculations, we have determined new thermonuclear rates of the 64Ge(p,γ)65As and 65As(p,γ)66Se reactions with reliable uncertainties. The new reaction rates differ significantly from previously published rates. Using the new data, we analyze the impact of the new rates and the remaining nuclear physics uncertainties on the 64Ge waiting point in a number of representative one-zone XRB models. We find that in contrast to previous work, when all relevant uncertainties are considered, a strong 64Ge rp-process waiting point cannot be ruled out. The nuclear physics uncertainties strongly affect XRB model predictions of the synthesis of 64Zn, the synthesis of nuclei beyond A?=?64, the energy generation, and the burst light curve. We also identify key nuclear uncertainties that need to be addressed to determine the role of the 64Ge waiting point in XRBs. These include the remaining uncertainty in the 65As mass, the uncertainty of the 66Se mass, and the remaining uncertainty in the 65As(p,γ)66Se reaction rate, which mainly originates from uncertain resonance energies.
机译:I型X射线爆发(XRB)模型中的核合成程度以及对这些爆炸事件中释放的能量的相关影响对64 Ge等待点附近的核质量和反应速率敏感。使用众所周知的64Ge质量,最近测量的65As质量以及大规模的壳模型计算,我们确定了64Ge(p,γ)65As和65As(p,γ)66Se反应的新热核速率,并且具有可靠的不确定性。新的反应速率与以前公布的速率有很大不同。使用新数据,我们分析了许多代表性的单区XRB模型中新速率和剩余核物理不确定性对64Ge等待点的影响。我们发现,与先前的工作相反,当考虑所有相关不确定性时,不能排除强烈的64Ge rp进程等待点。核物理的不确定性极大地影响了XRB模型对64Zn的合成,超过A?=?64的原子核的合成,能量的产生以及爆裂光曲线的预测。我们还确定了需要确定的关键核不确定性,以确定64Ge等待点在XRB中的作用。其中包括65As质量的剩余不确定性,66Se质量的不确定性以及65As(p,γ)66Se反应速率的剩余不确定性,这主要是由于不确定的共振能量引起的。

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