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首页> 外文期刊>Physical review, C >Determination of the photodisintegration reaction rates involving charged particles: Systematic calculations and proposed measurements based on the facility for Extreme Light Infrastructure-Nuclear Physics
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Determination of the photodisintegration reaction rates involving charged particles: Systematic calculations and proposed measurements based on the facility for Extreme Light Infrastructure-Nuclear Physics

机译:测定涉及带电粒子的光电二聚乙烯反应速率:系统计算和基于极端浅基础设施 - 核物理学设施的提出测量

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摘要

Photodisintegration reaction rates involving charged particles are relevant to the p-process nucleosynthesis that aims at explaining the production of stable neutron-deficient nuclides heavier than iron. In this study, considering the compound and pre-equilibrium reaction mechanisms, the cross sections and astrophysical rates of (gamma, p) and (gamma, alpha) reactions for about 3000 target nuclei with 10 = Z = 100 ranging from stable to proton dripline nuclei are computed. To study the sensitivity of the calculations to the optical model potentials (OMPs), both the phenomenological Woods-Saxon and the microscopic folding OMPs are taken into account. The systematic comparisons show that the reaction rates, especially for the (gamma, alpha) reaction, are dramatically influenced by the OMPs. Thus, better determination of the OMP is crucial to reduce the uncertainties of the photodisintegration reaction rates involving charged particles. Meanwhile, a gamma-beam facility at Extreme Light InfrastructureNuclear Physics (ELI-NP) is being developed which will open new opportunities to experimentally study the photodisintegration reactions of astrophysical interest. Considering both the important reactions identified by the nucleosynthesis studies and the purpose of complementing the experimental results for the reactions involving p nuclei, the measurements of six (gamma, p) and eight (gamma, alpha) reactions based on the gamma-beam facility and the Extreme Light Infrastructure Silicon Strip Array (ELISSA) for the detection of charged particles at ELI-NP are proposed. Furthermore, the GEANT4 simulations on these (gamma, p) and (gamma, alpha) reactions are performed using the calculated cross sections and the features of the gamma-beam facility and the ELISSA detector at ELI-NP. Simultaneously satisfying the minimum detectable limit of the experimental yield and the particle identification of protons and a particles, the minimum required energies of the. beam to measure the six (gamma, p) and eight (gamma, alpha) reactions are estimated. It is shown that the direct measurements of these photonuclear reactions based on the gamma-beam facility at ELI-NP within the Gamow windows at the typical temperature of T-9 = 2.5 for the p-process are fairly feasible and promising. We believe that this pivotal work will guide the future photodisintegration experiments at ELI-NP. Furthermore, the expected experimental results will be used to constrain the OMPs of the charged particles, which can eventually reduce the uncertainties of the reaction rates for the p-process nucleosynthesis.
机译:涉及带电粒子的光致剂反应率与p-process核酸合成相关,其旨在解释比铁重的稳定中子缺陷核素的产生。在该研究中,考虑到化合物和预平衡反应机制,(γ,P)和(γα)反应的横截面和天体物理率约为3000个靶核,其中10℃。= 100来自计算稳定的质子司石核。为了研究计算对光学模型电位(OMP)的敏感性,考虑了现象学沼地和显微折叠OMP。系统的比较表明,反应速率,特别是对于(γ,α)反应,受到OMP的显着影响。因此,更好地确定OMP是至关重要的,以减少涉及带电粒子的光电沉淀反应速率的不确定性。同时,正在开发出极端光基础设施核心物理学(ELI-NP)的伽马束设施,这将开辟新的机会,以便在实验研究天体物理兴趣的光透明反应。考虑到核酸合作研究鉴定的重要反应以及补充涉及p核的反应的实验结果,基于伽马束设施和基于伽马束设施的六(γ,p)和八个(γ,α)反应的测量结果提出了用于检测ELI-NP的带电粒子的极端光基础设施硅条阵列(ELISSA)。此外,使用所计算的横截面和Eli-NP的伽马束设施和Elissa检测器的特征来进行这些(γ,p)和(γ,α)反应的Geant4模拟。同时满足实验产量的最小可检测极限和质子的粒子鉴定,颗粒的颗粒鉴定,所需的最低能量。据估计梁测量六(γ,P)和8(γ,α)反应。结果表明,在P-9 = 2.5的典型温度下,基于ELI-NP的伽马束设施的这些光子扫描装置的直接测量是相当可行和有前途的。我们认为,这种关键作用将指导Eli-NP的未来光分解实验。此外,预期的实验结果将用于约束带电粒子的OMP,这最终可以降低对P-Process核酸合成的反应速率的不确定性。

著录项

  • 来源
    《Physical review, C》 |2018年第5期|共12页
  • 作者单位

    Univ South China Sch Nucl Sci &

    Technol Hengyang 421001 Peoples R China;

    Extreme Light Infrastruct Nucl Phys RO-077125 Magurele Romania;

    Univ South China Sch Nucl Sci &

    Technol Hengyang 421001 Peoples R China;

    Extreme Light Infrastruct Nucl Phys RO-077125 Magurele Romania;

    Univ Libre Bruxelles Inst Astron &

    Astrophys CP-226 B-1050 Brussels Belgium;

    INFN Lab Nazl Sud I-95123 Catania Italy;

    Extreme Light Infrastruct Nucl Phys RO-077125 Magurele Romania;

    INFN Lab Nazl Sud I-95123 Catania Italy;

    Extreme Light Infrastruct Nucl Phys RO-077125 Magurele Romania;

    Extreme Light Infrastruct Nucl Phys RO-077125 Magurele Romania;

    Extreme Light Infrastruct Nucl Phys RO-077125 Magurele Romania;

    INFN Lab Nazl Sud I-95123 Catania Italy;

    INFN Lab Nazl Sud I-95123 Catania Italy;

    INFN Lab Nazl Sud I-95123 Catania Italy;

    INFN Lab Nazl Sud I-95123 Catania Italy;

    INFN Lab Nazl Sud I-95123 Catania Italy;

    Univ South China Sch Nucl Sci &

    Technol Hengyang 421001 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

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