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Emission of Noble Gases Binary Mixtures under Excitation by the Products of the 6Li (n, α)3 H Nuclear Reaction

机译:在6LI(n,α)3 h核反应的产物中,惰性气体的发射二元混合物的发射

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The luminescence of Kr-Xe, Ar-Kr, and Ar-Xe mixtures was studied in the spectral range 300–970?nm when excited by 6Li (n, α)3 H nuclear reaction products in the core of a nuclear reactor. Lithium was deposited on walls of experimental cell in the form of a capillary-porous structure, which made it possible to measure up to a temperature of 730?K. The temperature dependence of the radiation intensity of noble gas atoms, alkali metals, and heteronuclear ionic noble gas molecules was studied. Also, as in the case of single-component gases, the appearance of lithium lines and impurities of sodium and potassium is associated with vaporization during the release of nuclear reaction products from the lithium layer. The excitation of lithium atoms occurs mainly as a result of the Penning process of lithium atoms on noble gas atoms in the 1s states and subsequent ion-molecular reactions. Simultaneous radiation at transitions of atoms of noble gases and lithium, heteronuclear ion molecules of noble gases allows us to increase the efficiency of direct conversion of nuclear energy into light.
机译:在核反应堆核心的6LI(n,α)3 h核反应产物中激发,在光谱范围为300-970℃,在核反应堆的核心激发时,研究了KR-XE,AR-KR和AR-XE混合物的发光。锂以毛细管 - 多孔结构的形式沉积在实验细胞的壁上,这使得可以测量高达730〜K的温度。研究了贵气体原子,碱金属和异核离子惰性气体分子的辐射强度的温度依赖性。而且,如在单组分气体的情况下,锂线和钠和钾的杂质的外观与锂层释放核反应产物的蒸发有关。锂原子的激发主要是由于1S状态下惰性气体原子上的锂原子的粘合过程和随后的离子分子反应的结果。惰性气体原子的转变同时辐射,惰性气体的异核离子分子使我们能够将核能直接转化为光的效率。

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