1000 resultados para Ne Waza


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描述了在兰州放射性次级束流线上用 80MeV/u的2 0 Ne轰击Be靶产生出理论上预言有奇异结构的17Ne的次级束流 ,并用它轰击Si靶 ,测量它的反应总截面并与其相邻的核相比较 ,发现截面值没有增大的现象 .利用微观的Glauber模型进行了计算 ,理论计算和实验结果符合很好 ,确认其没有奇异结构 .

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报道Arq + +Ne(q =8,9,11,12 )碰撞体系中多电子转移过程 ,得到了多组实验测量电荷交换截面数据 ,讨论入射离子电荷交换截面、反冲离子产生截面与入射离子电荷态、能量以及散射离子电荷态的关系 ,并且将实验结果与Arq + +Ar碰撞体系进行对比研究。在修正分子库仑过垒模型的基础上 ,对实验现象做了合理的解释

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采用符合关联实验技术进行的Ar~(q+)+Ne(q=8,9,11,12)碰撞体系中多电子转移过程的研究。在实验上鉴别了反应中各种电子转移过程,并测量了转移电离截面。研究了转移电离截面与反冲离子电荷态的关系,并利用修正后的分子过垒模型计算结果与实验结果进行了对比分析,计算结果较合理地描述了实验现象。

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介绍了用透射法测量中能区2 0 Ne打9Be靶碎裂产生的次级束与Si靶作用的核反应总截面的方法 ,以及实验的探测器布局、实验过程和实验结果 .并对理论上预言有奇异结构的核1 2 N ,1 7Ne和1 7F的实验结果与其相邻核进行了比较

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采用逆运动学方法对放射性核束17F和18Ne与质子进行弹性散射实验 ,得到了实验测量微分截面 .用较准确描述放射性核素性质的CH89参数化的光学势为初始光学势 ,用扭曲波玻恩近似的理论计算程序DWUCK4和自动参数搜索程序ABOD对实验数据进行光学势参数理论拟合 ,得到了与实验数据相符合的光学势参数 .将得到的光学势参数进行分析 ,得到了17F和18Ne实势相互作用均方根半径分别为 3 2 3 9fm和 3 3 1 7fm .

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讨论了目前16O(α ,γ) 2 0 Ne反应的实验研究工作 ,并对2 0 Na β+—→2 0 N →16O +α的β+ 缓发衰变α能谱的相对强度值同文献进行了比较 ,讨论了低能激发能级、共振强度及其对共振截面的贡献、S因子的理论研究 .

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用半经典模型考虑20Na+208Pb→p+19Ne+208Pb的Coulomb解离过程。用MonteCarlo方法计算前角放置的望远镜阵列对Coulomb解离碎片的探测效率。讨论了天体环境下p+19Ne→20Na俘获反应道的低能级共振截面测量的可行性。

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An investigation of a commercial oxide dispersion-strengthened steel (MA9561) irradiated with high energy Ne-ions to high doses at elevated temperatures is presented. Specimens of MA956 oxide dispersion strengthened steel together with a 9% Cr ferritic/martensitic steel, e.g., Grade 92 steel were irradiated simultaneously with 20Ne-ions (with 122 MeV) to successively increasing damage levels of 1, 5 and 10 dpa at the damage peak at 440 C and 570 C, respectively. Cross-sectional microstructures of the specimens were investigated with transmission electron microscopy. MA956 oxide dispersion strengthened steel showed a higher resistance to void swelling especially to void growth at the grain boundaries than the ferritic/martensitic steel, e.g., Grade 92 steel did, and thus exhibited a prominence for an application in the situation of a high He production at high temperatures. The suppression of the growth of voids especially at the grain boundaries in MA956 is ascribed to an enhanced recombination of the point defects and a trapping of Ne atoms at the interfaces of the yttrium–aluminum oxide particles and the matrix.