论文标题

使用可变能量$γ$ - 雷系统在极端光基础设施 - 核物理设施中研究天体重要的充电粒子发射的可行性

Feasibility of studying astrophysically important charged-particle emission with the variable energy $γ$-ray system at the Extreme Light Infrastructure -- Nuclear Physics facility

论文作者

Lan, H. Y., Luo, W., Xu, Y., Balabanski, D. L., Guardo, G. L., La Cognata, M., Lattuada, D., Matei, C., Pizzone, R. G., Rauscher, T., Zhou, J. L.

论文摘要

在恒星爆炸中实现的热等离子体的环境中,捕获和光分散反应在核中激发态上进行的反应可以极大地有助于天体物理反应率。从理论计算中获得了包括激发态贡献在内的这种反应速率,因为目前对这些天体物理率的直接实验确定是不可行的。在本研究中,考虑了与天体物理$ p $工艺相关的质量和能量范围的($γ$,p)和($γ$,$α$)的反应,并研究了ELI-NP的ELISA探测器系统在未来可变的能量$γ$ -Ray(VEGA)设施中使用Elissa检测器系统测量它们的可行性。模拟结果表明,对于($γ$,p)的十二个目标,$^{29} $ si,$^{56} $ fe,$^{74} $ se,$^{84} $ sr,$^{91} $^{106}$Cd, and $^{115, 117, 119}$Sn, and the ($γ$,$α$) reaction on five targets of $^{50}$V, $^{87}$Sr, $^{123,125}$Te, and $^{149}$Sm, the yields of the reaction channels with the transitions to the excited states in the residual核是相关的,甚至占主导地位。进一步发现,对于每种考虑的反应,带电粒子$ x $的总产率可能主要由一个,两个或三个($γ$,$ x_ {i} $)通道造成,在事件$γ$ beam的特定能量范围内。此外,使用$ 0 \ leq i \ leq 10 $的($γ$,$ x_ {i} $)通道的能量光谱进行了模拟,每个被考虑的反应都会在以前派生的各个能量范围内发生$γ$ beam Energies。很明显,在这项工作中考虑的带电粒子排放的光子诱导的反应是可行的,Vega+Elissa系统是可行的,并且将为核天体物理学提供有用的知识。

In the environment of a hot plasma, as achieved in stellar explosions, capture and photodisintegration reactions proceeding on excited states in the nucleus can considerably contribute to the astrophysical reaction rate. Such reaction rates including the excited-state contribution are obtained from theoretical calculations as the direct experimental determination of these astrophysical rates is currently unfeasible. In the present study, ($γ$,p) and ($γ$,$α$) reactions in the mass and energy range relevant to the astrophysical $p$ process are considered and the feasibility of measuring them with the ELISSA detector system at the future Variable Energy $γ$-ray (VEGA) facility at ELI-NP is investigated. The simulation results reveal that, for the ($γ$,p) reaction on twelve targets of $^{29}$Si, $^{56}$Fe, $^{74}$Se, $^{84}$Sr, $^{91}$Zr, $^{96,98}$Ru, $^{102}$Pd, $^{106}$Cd, and $^{115, 117, 119}$Sn, and the ($γ$,$α$) reaction on five targets of $^{50}$V, $^{87}$Sr, $^{123,125}$Te, and $^{149}$Sm, the yields of the reaction channels with the transitions to the excited states in the residual nucleus are relevant and even dominant. It is further found that for each considered reaction, the total yields of the charged-particle $X$ may be dominantly contributed from one, two or three ($γ$,$X_{i}$) channels within a specific, narrow energy range of the incident $γ$-beam. Furthermore, the energy spectra of the ($γ$,$X_{i}$) channels with $0\leq i\leq 10$ are simulated for each considered reaction, with the incident $γ$-beam energies in the respective energy range as derived before. It becomes evident that measurements of the photon-induced reactions with charged-particle emissions considered in this work are feasible with the VEGA+ELISSA system and will provide knowledge useful for nuclear astrophysics.

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