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A study of Venus surface elemental composition from 14 MeV neutron induced gamma ray spectroscopy: Activation analysis

机译:14 MeV中子诱发γ射线光谱对金星表面元素组成的研究:活化分析

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The surface elemental composition of Venus can be determined using an artificially pulsed 14 MeV neutron generator (PNG) combined with a gamma ray spectrometer (GRS). The 14 MeV neutrons will interact with the surface materials and generate gamma rays, characteristic of specific elements, whose energy spectrum will be measured by GRS. These characteristic gamma rays are produced mainly through 3 different neutron interaction mechanisms: capture, inelastic, and activation reactions. Each reaction type has a different neutron energy dependency and different time scale for gamma ray production and transport. Certain elements are more easily identified through one reaction type over the others. Thus, careful analysis of the gamma ray spectra during and after the neutron pulse provides a comprehensive understanding of the surface elemental composition. In this paper, we use a well-tested neutron/gamma transport code, called Monte Carlo N-Particles (MCNP), to investigate the measurement capability of a PNG-GRS detection system through the neutron activation reactions. An activation analysis was performed for a representative soil composition of Venus with a notional operational scenario of PNG and GRS. The analysis shows that the proposed instrument concept can identify most of the modeled surface elements at Venus with sufficient accuracy through the activation mode. Specifically, U, Th, K, Si can be measured to within 1 %, Fe within 2%, Al within 10%, Ca within 5%, Mg with 15%, Mn with 20%, and Cl within 6%. Although modeled in the analysis, it is shown that the activation mode alone cannot distinguish the S and Ti peaks.
机译:金星的表面元素组成可以使用人工脉冲14 MeV中子发生器(PNG)与伽马射线能谱仪(GRS)结合确定。 14个MeV中子将与表面材料相互作用,并产生特定元素所特有的伽马射线,其能谱将由GRS测量。这些特征性的伽玛射线主要是通过3种不同的中子相互作用机理产生的:捕获,非弹性和活化反应。每种反应类型都有不同的中子能量依存性和伽马射线产生和传输的不同时标。通过一种反应类型比其他反应类型更容易识别某些元素。因此,在中子脉冲期间和之后仔细分析伽马射线谱可提供对表面元素组成的全面理解。在本文中,我们使用一种经过良好测试的中子/伽马传输码,称为蒙特卡洛N粒子(MCNP),以研究PNG-GRS检测系统通过中子活化反应的测量能力。对具有代表性的PNG和GRS操作方案的金星的代表性土壤成分进行了激活分析。分析表明,所提出的仪器概念可以通过激活模式以足够的精度识别金星上的大多数建模表面元素。具体地,可以测量出U,Th,K,Si在1%以内,Fe在2%以内,Al在10%以内,Ca在5%以内,Mg在15%以内,Mn在20%以内以及Cl在6%以内。尽管在分析中建模,但显示仅激活模式无法区分S和Ti峰。

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