首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Giant resonance spectroscopy of Ca-40 with the (e,e ' x) reaction (II): Multipole decomposition of 4 pi-integrated spectra and angular correlations
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Giant resonance spectroscopy of Ca-40 with the (e,e ' x) reaction (II): Multipole decomposition of 4 pi-integrated spectra and angular correlations

机译:(e,e'x)反应(II)的Ca-40的巨共振光谱:4个pi积分光谱和角度相关性的多极分解

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The present article is the second out of three on a study of the Ca-40(e, e'x) reaction discussing the multipole decomposition of the measured cross sections and the analysis of angular correlations. The decomposition of the strongly overlapping E0, E1 and E2 giant resonance strengths using the (e, e'x; x = p, alpha) reaction in Ca-40 is discussed for excitation energies between 10 and about 21 MeV. Two extraction methods are presented based on the variation of the form factors for the different multipoles. The resulting B(E1) strength distribution is in good agreement with (gamma, x) photoabsorption data. The summed B(E2) and B(E0) strength is highly fragmented and spread out over the energy region investigated. Microscopic continuum RPA calculations including the coupling of the basic particle-hole states to the low-lying surface vibrations are capable of reproducing the strength distributions quite accurately. Exhaustion of the energy-weighted sum rules (EWSR) for the various decay channels is presented. A complete decomposition of E0, E1 and E2 contributions in Ca-40 is possible for (e, e'alpha) angular correlations populating the Ar-36 ground state. Contrary to expectations, the form factors of isoscalar E0 and E2 strengths in the Ca-40(e, e'alpha (0)) reaction exhibit increasing differences towards smaller momentum transfers. Angular correlations for proton decay into low-lying states of K-39 are compared to a self-consistent continuum RPA calculation which allows a systematic description of the strong variations observed as a function of Ca-40 excitation energy and momentum transfer. The success implies that direct knock-out models of the Ca-40(e. e'p) reaction are too simple. Furthermore, the shapes of the angular correlations seem to be determined largely by the final-state interaction, in particular by charge exchange reactions in the nuclear medium. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 58]
机译:本文是研究Ca-40(e,e'x)反应的三分之二,讨论了测量截面的多极分解和角度相关性分析。讨论了在Ca-40中使用(e,e'x; x = p,α)反应对强重叠的E0,E1和E2巨型共振强度的分解,其激发能量在10到21 MeV之间。根据不同多极的形状因子的变化,提出了两种提取方法。所得的B(E1)强度分布与(γ,x)光吸收数据高度吻合。 B(E2)和B(E0)的总强度高度分散,并散布在研究的能量区域内。微观连续RPA计算(包括基本的粒子孔态与低洼表面振动的耦合)能够非常准确地再现强度分布。给出了各种衰减通道的能量加权和规则(EWSR)的耗尽。对于(e,e'α)角相关填充Ar-​​36基态的情况,Ca-40中E0,E1和E2贡献的完全分解是可能的。与预期相反,Ca-40(e,e'alpha(0))反应中等量标量E0和E2强度的形状因数显示出向较小动量传递的差异不断增加。将质子衰减到K-39的低态的角相关性与自洽连续谱RPA计算进行了比较,该计算可以系统地描述观察到的强变化作为Ca-40激发能和动量传递的函数。这一成功表明Ca-40(e.e'p)反应的直接敲除模型太简单了。此外,角度相关的形状似乎很大程度上取决于最终状态的相互作用,特别是取决于核介质中的电荷交换反应。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:58]

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