Optical Radiation from the Sputtered Species under Excitation of Ternary Mixtures of Noble Gases by the 6Li(n,α)3H Nuclear Reaction Products

IF 0.5 Q4 CHEMISTRY, MULTIDISCIPLINARY
K. Samarkhanov, M. Khasenov, E. Batyrbekov, Y. Gordienko, Y. Baklanova, I. Kenzhina, Y. Tulubayev, I. Karambayeva
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引用次数: 10

Abstract

The present paper examines the luminescence of ternary Ar-Kr-Xe and Ne-Ar-Kr mixtures of noble gases in the spectral range from 300 to 970 nm, excited by the 6Li(n,α)3H nuclear reaction products in the core of a nuclear reactor. A thin layer of lithium applied on the walls of the experimental device, stabilized in the matrix of the capillary-porous structure, serves as a source of gas excitation. During in-pile tests, conducted at the IVG.1M research reactor, thermal neutrons interact via the 6Li(n,α)3H reaction, and the emergent alpha particles with a kinetic energy of 2.05 MeV and tritium ions with a kinetic energy of 2.73 MeV excite gaseous medium. The study was carried out in a wide temperature range. The temperature dependence of the intensity of the emission of the atoms of noble gases and alkali metals, heteronuclear ionic molecules of noble gases were studied. The obtained values of the activation energy of the emission process 1.58 eV for lithium and 0.72 eV for potassium agree well with the known values of evaporation energy. Excitation of alkali metals atoms occurs consequently of the Penning process of alkali metals atoms on noble gas atoms in the 1s-states and further ion-molecular reactions.
6Li(n,α)3H核反应产物激发稀有气体三元混合物溅射物质的光辐射
本文研究了在核反应堆堆芯由6Li(n,α)3H核反应产物激发的稀有气体三元Ar-Kr-Xe和Ne-Ar-Kr混合物在300 ~ 970 nm光谱范围内的发光。在实验装置的壁上涂上一层薄薄的锂,稳定在毛细管-多孔结构的基质中,作为气体激发的来源。在IVG.1M研究堆上进行的堆内试验中,热中子通过6Li(n,α)3H反应相互作用,涌现出动能为2.05 MeV的α粒子和动能为2.73 MeV的氚离子激发气态介质。这项研究是在一个很宽的温度范围内进行的。研究了稀有气体原子和碱金属、稀有气体异核离子分子的发射强度与温度的关系。得到的发射过程活化能(锂为1.58 eV,钾为0.72 eV)与已知的蒸发能值吻合较好。碱金属原子在1s态的稀有气体原子上的潘宁过程和进一步的离子-分子反应导致碱金属原子的激发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Eurasian Chemico-Technological Journal
Eurasian Chemico-Technological Journal CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
1.10
自引率
20.00%
发文量
6
审稿时长
20 weeks
期刊介绍: The journal is designed for publication of experimental and theoretical investigation results in the field of chemistry and chemical technology. Among priority fields that emphasized by chemical science are as follows: advanced materials and chemical technologies, current issues of organic synthesis and chemistry of natural compounds, physical chemistry, chemical physics, electro-photo-radiative-plasma chemistry, colloids, nanotechnologies, catalysis and surface-active materials, polymers, biochemistry.
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