论文标题
$^{19} $ ne中的子阈值与$^{18} $ f(p,$α$)$^{15} $ o相关
Sub-threshold states in $^{19}$Ne relevant to $^{18}$F(p,$α$)$^{15}$O
论文作者
论文摘要
热核爆炸产生的经典Novae产生了几种$γ$ - 雷发射器,这些发射器是观察到MEV范围的卫星的主要目标。 511早期的Kev Gamma-ray排放批准取决于$^{18} $ f(p,$α$)$^{15} $ o反应速率,尽管有许多实验性和理论上的努力,但仍然不确定。 $^{18} $ f(p,$α$)$^{15} $ o反应速率的主要不确定性之一是在gamow窗口中的贡献。因此,这项工作的目的是阐明这些亚阈值国家的存在和性质。使用$^{19} $ f($^3 $ he,t)$^{19} $ ne电荷交换反应,在$^{19} $ ne化合物核中进行了串联设施研究。用ENGE拆分光谱仪检测到Triton,同时收集了来自未结合$^{19} $ ne状态的$α$ - 粒子,并与双面硅条检测器阵列一起收集。提取角度相关性,并对建立的腐烂状态的自旋和奇偶校验的约束。观察到$ e_x $ = 6.29 MeV的巧合产率是高旋转的,这支持了这样的结论,即它确实是由高自旋和低自旋组成的双重组。在6 MEV左右观察到广泛的低旋状态的证据。提取了高于质子阈值的几个状态的分支比率,并被发现与文献一致。 R-Matrix计算显示,亚阈值状态对质子阈值以上的天体重要能量区域的相对贡献。 $^{19} $ ne和$^{19} $ f的水平方案仍然不够众所周知,需要对模拟分配的进一步研究。 6 MEV处的暂定宽状态只有在较小的质子宽度很大时才起作用。
Classical novae result from thermonuclear explosions producing several $γ$-ray emitters which are prime targets for satellites observing in the MeV range. The early 511 keV gamma-ray emission depends critically on the $^{18}$F(p,$α$)$^{15}$O reaction rate which, despite many experimental and theoretical efforts, still remains uncertain. One of the main uncertainties in the $^{18}$F(p,$α$)$^{15}$O reaction rate is the contribution in the Gamow window of interference between sub-threshold $^{19}$Ne states and known broad states at higher energies. Therefore the goal of this work is to clarify the existence and the nature of these sub-threshold states. States in the $^{19}$Ne compound nucleus were studied at the Tandem-ALTO facility using the $^{19}$F($^3$He,t)$^{19}$Ne charge exchange reaction. Tritons were detected with an Enge Split-pole spectrometer while decaying protons or $α$-particles from unbound $^{19}$Ne states were collected, in coincidence, with a double-sided silicon strip detector array. Angular correlations were extracted and constraints on the spin and parity of decaying states established. The coincidence yield at $E_x$ = 6.29 MeV was observed to be high spin, supporting the conclusion that it is indeed a doublet consisting of high spin and low spin components. Evidence for a broad, low spin state was observed around 6 MeV. Branching ratios were extracted for several states above the proton threshold and were found to be consistent with the literature. R-matrix calculations show the relative contribution of sub-threshold states to the astrophysically important energy region above the proton threshold. The levels schemes of $^{19}$Ne and $^{19}$F are still not sufficiently well known and further studies of the analogue assignments are needed. The tentative broad state at 6 MeV may only play a role if the reduced proton width is large.