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首页> 外文期刊>Nuclear instruments and methods in physics research >Development of a low-level setup for gamma spectroscopy: Application for nuclear astrophysics using reverse kinematics
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Development of a low-level setup for gamma spectroscopy: Application for nuclear astrophysics using reverse kinematics

机译:伽马能谱低级装置的开发:使用反向运动学的核天体物理学应用

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摘要

It is more and more necessary to improve the sensitivity of gamma-ray spectroscopy systems, especially in nuclear astrophysics. In the case of radiative proton capture reactions, one means is to avoid the reactions on the target impurities by using reverse kinematics. This technique is possible with the LARN accelerator and can provide very clean cross-section measurements. For that purpose, a hydrogen standard has been carried out by means of ion implantation in silicon. In addition, a low-level setup has been put in place on a new beam line of the accelerator. A high efficiency and high resolution germanium detector is used conjointly with a double shielding. A passive lead castle shielding system is used to reduce the natural radioactivity and an active shielding consisting of an anti-cosmic veto is provided by an anticoincidence between the plastic scintillator and the gamma-ray detector. The setup allows a reduction of 70% of the background interference and provides an approximately 200 fold sensitivity gain of between 600 and 3000 keV. Some other developments have also been carried out to optimize the setup. The entire setup and the reverse kinematics have been validated by measuring the cross-section of the ~(13)C(p,γ)~(14)N and ~(15)N(p,γ)~(16)O reactions that present some astrophysical interest.
机译:越来越需要提高伽玛射线光谱系统的灵敏度,尤其是在核天体物理学中。在辐射质子捕获反应的情况下,一种方法是通过使用反向运动学避免与目标杂质发生反应。 LARN加速器可以使用此技术,并且可以提供非常干净的横截面测量。为此,已经通过在硅中进行离子注入来实现氢标准。此外,已经在加速器的新光束线上进行了低级设置。高效,高分辨率的锗探测器与双重屏蔽配合使用。无源铅城堡屏蔽系统用于降低自然放射性,而塑料闪烁体和伽马射线探测器之间的反符合可提供由反宇宙否决权构成的有源屏蔽。该设置可以减少70%的背景干扰,并提供600至3000 keV之间的大约200倍的灵敏度增益。还进行了其他一些开发来优化设置。通过测量〜(13)C(p,γ)〜(14)N和〜(15)N(p,γ)〜(16)O反应的横截面来验证整个装置和反向运动学表现出一些天体的兴趣。

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    Research Centre in Physics of Matter and Radiation (PMR), Laboratoire d'Analyses par Reactions Nucleaires (LARN), University of Namur (FUNDP), Rue de Bruxelles, 61, B-5000 Namur, Belgium;

    rnResearch Centre in Physics of Matter and Radiation (PMR), Laboratoire d'Analyses par Reactions Nucleaires (LARN), University of Namur (FUNDP), Rue de Bruxelles, 61, B-5000 Namur, Belgium;

    rnResearch Centre in Physics of Matter and Radiation (PMR), Laboratoire d'Analyses par Reactions Nucleaires (LARN), University of Namur (FUNDP), Rue de Bruxelles, 61, B-5000 Namur, Belgium;

    rnResearch Centre in Physics of Matter and Radiation (PMR), Laboratoire d'Analyses par Reactions Nucleaires (LARN), University of Namur (FUNDP), Rue de Bruxelles, 61, B-5000 Namur, Belgium;

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  • 正文语种 eng
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  • 关键词

    nuclear astrophysics; reverse kinematics; radiative proton capture; hydrogen standard; ion implantation; low-level gamma-ray spectroscopy;

    机译:核天体物理学反向运动学辐射质子捕获氢标准离子注入低能伽马射线光谱;

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