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First application of the dispersive optical model to ($$p$$,$$2p$$) reaction analysis within the distorted-wave impulse approximation framework

Dispersive optical modelを用いた歪曲波インパルス近似による初の($$p$$,$$2p$$)反応解析

吉田 数貴   ; Atkinson, M. C.*; 緒方 一介*; Dickhoff, W. H.*

Yoshida, Kazuki; Atkinson, M. C.*; Ogata, Kazuyuki*; Dickhoff, W. H.*

Dispersive optical model (DOM)波動関数をこれまでの($$p$$,$$2p$$)反応解析に適用し、($$e$$,$$e'p$$)反応解析との整合性を確認した。DOM波動関数を歪曲波インパルス近似に適用し、$$^{40}$$Ca($$p$$,$$2p$$)$$^{39}$$Kデータを解析した結果、$$0d_{3/2}$$軌道の陽子の分光学的因子は0.5660となり、これはDOMによる($$e$$,$$e'p$$)解析の結果で得られた0.71より有意に小さい。この不整合は原子核内での$$p$$-$$p$$散乱の記述に改善が必要であることを示唆している。

We apply the dispersive optical model (DOM) wave functions to the traditional ($$p$$,$$2p$$) analysis and investigate the consistency of the DOM spectroscopic factor that describes the ($$e$$,$$e'p$$) cross section with the result of the ($$p$$,$$2p$$) analysis. DOM + distorted wave impulse approximation analysis on $$^{40}$$Ca($$p$$,$$2p$$)$$^{39}$$K data generates a proton $$0d_{3/2}$$ spectroscopic factor of 0.560, which is meaningfully smaller than the DOM value of 0.71 shown to be consistent with the ($$e$$,$$e'p$$) analysis. The inconsistency in the spectroscopic factor suggests there is urgent need for improving the description of $$p$$-$$p$$ scattering in a nucleus.

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パーセンタイル:33.4

分野:Physics, Nuclear

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