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鈴木 彰真*; 出口 祥啓*; Safil Alam, T.*; 森 悠馬*; 菊地 晋; 栗原 成計
no journal, ,
本研究では、ナトリウム-水反応場における気相/液相反応(表面反応)評価を行うことを目的にラマン散乱法を用いたナトリウム-水反応場における反応生成物(NaOH, NaO, Na
O
)の計測を行った。
鈴木 彰真*; 出口 祥啓*; Safil Alam, T.*; 森 悠馬*; 菊地 晋; 栗原 成計
no journal, ,
本研究では、Na-水反応場における気相/液相反応(表面反応)評価を行うため、Na-水反応において主な反応生成物と想定される水酸化ナトリウム(NaOH試薬)を使用したラマン散乱法による計測を行った。また、試薬を用いた計測で得られたデータを基に表面反応場における生成物の推定を行った。
福井 徳朗; 延与 佳子*; 菊地 右馬*; 松本 琢磨*; 緒方 一介*; 須原 唯広*; 谷口 億宇*; 八尋 正信*
no journal, ,
First, we show that, for the coupled-channels Born approximation (CCBA) analysis of the reaction, it is essentially important to consider the transfer process from (to) the breakup state of
(
). These transfer process called the breakup transfer is never taken into account in the distorted-wave Born approximation (DWBA). Next, the importance of the CCBA model is given for the description of the
-transfer reaction
, of which, so far the DWBA has been failed to produce the cross section to be consistent with measured one. Our calculation greatly improves coincidence of the calculation with the data and enables us to discuss the surface distribution of the
-cluster structure of
. Finally, how to describe transfer reaction to continuum state, such as
, is presented. It is known that the integration in the transition matrix (
matrix) of such reaction does not converge. To avoid this problem, the prior form of the
matrix, for which the CCBA model is required to calculate the approximately exact wave function of the final channel, is employed.