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Application of nuclear reaction geometry for ~3He depth profiling in nuclear ceramics

机译:核反应几何学在核陶瓷中〜3He深度剖析中的应用

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Direct observation of nuclear reactions leading to the emission of charged particles (p or α) allows to determine specifically the spatial distribution of isotopes of light elements from ~1H to ~(23)Na and despite low cross section values some heavier isotopes from ~(24)Mg to ~(68)Zn. After a brief overview of the analytical capabilities offered by Μnra, this contribution is focussed on the measurement of the thermal diffusion coefficient of ~3He in crystalline ceramics. The experimental method is based on the observation of the ~3He(d, p)α reaction. Due to the severe energy loss along the outgoing path, the choice of the detection of the high energy proton or recoil α nucleus depends on the average depth of the 'He distribution. For near surface distributions (<2μm), the detection of the α-particle gives a good depth resolution (50 nm). For larger depths (5 < x < 10μm), the detection of the 12-14 MeV proton limits the depth resolution around 100 nm. After temperature-controlled annealing, the thermal diffusion coefficient can be deduced from the broadening of the helium-3 depth profile according to the classical Fick's law formalism by using the computing code SIMNRA. Several examples concerning simple oxides and more complex ceramics considered as potential nuclear waste forms or transmutation targets are then presented and discussed.
机译:直接观察导致释放带电粒子(p或α)的核反应,可以具体确定从〜1H到〜(23)Na的轻元素同位素的空间分布,尽管横截面值低,但〜( 24)镁到〜(68)Zn。在对Mnra提供的分析功能进行简要概述之后,这一贡献集中在晶体陶瓷中〜3He的热扩散系数的测量上。实验方法是基于〜3He(d,p)α反应的观察。由于沿输出路径的能量损失严重,选择高能质子或反冲α核取决于He分布的平均深度。对于近表面分布(<2μm),检测到的α粒子具有良好的深度分辨率(50 nm)。对于更大的深度(5

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