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Spectroscopic Amplitudes at the Vertices of the $${}^{\mathbf{28}}\mathbf{Si}\boldsymbol{\rightarrow p+}{}^{\mathbf{27}}$$ Al and $${}^{\mathbf{30}}\mathbf{Si}\boldsymbol{\rightarrow t+}{}^{27}$$ Al Virtual Decays
Moscow University Physics Bulletin ( IF 0.4 ) Pub Date : 2020-06-18 , DOI: 10.3103/s0027134920010166 N. S. Zelenskaya
中文翻译:
$$ {} ^ {\ mathbf {28}} \ mathbf {Si} \ boldsymbol {\ rightarrow p +} {} ^ {\ mathbf {27}} $$ Al和$$ {} ^的顶点处的光谱振幅{\ mathbf {30}} \ mathbf {Si} \ boldsymbol {\ rightarrow t +} {} ^ {27} $$ Al虚拟衰变
更新日期:2020-06-18
Moscow University Physics Bulletin ( IF 0.4 ) Pub Date : 2020-06-18 , DOI: 10.3103/s0027134920010166 N. S. Zelenskaya
Abstract
The spectroscopic amplitudes of the virtual decays of silicon isotopes \({}^{28(30)}\textrm{Si}(J_{B})\rightarrow p(t)+{}^{27}\textrm{Al}(J_{A})\) have been obtained using the wave functions of the \(1d{-}2s\)-shell nuclei in the Nilsson model. It has been shown that correct spectroscopy of the \(1d{-}2s\)-shell nuclei and consideration of their deformation has a significant effect on the values and signs of the spectroscopic amplitudes of both protons and tritons.中文翻译:
$$ {} ^ {\ mathbf {28}} \ mathbf {Si} \ boldsymbol {\ rightarrow p +} {} ^ {\ mathbf {27}} $$ Al和$$ {} ^的顶点处的光谱振幅{\ mathbf {30}} \ mathbf {Si} \ boldsymbol {\ rightarrow t +} {} ^ {27} $$ Al虚拟衰变