首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Study of the in-medium nucleon electromagnetic form factors using a light-front nucleon wave function combined with the quark-meson coupling model
【24h】

Study of the in-medium nucleon electromagnetic form factors using a light-front nucleon wave function combined with the quark-meson coupling model

机译:使用光前核心波函数与夸克 - 中核耦合模型结合的介质核仁电磁形状因子研究

获取原文
获取原文并翻译 | 示例
       

摘要

We study the nucleon electromagnetic (EM) form factors in symmetric nuclear matter as well as in vacuum within a light-front approach using the in-medium inputs calculated by the quark-meson coupling model. The same in-medium quark properties are used as those used for the study of in-medium pion properties. The zero of the proton EM form factor ratio in vacuum, the electric to magnetic form factor ratio mu(p)G(Ep)(Q(2))/G(Mp)(Q(2)) (Q(2) = -q(2) 0 with q being the four-momentum transfer), is determined including the latest experimental data by implementing a hard constituent quark component in the nucleon wave function. A reasonable fit is achieved for the ratio mu(p)G(Ep)(Q(2))/G(Mp)(Q(2)) in vacuum, and we predict that the Q(0)(2) value to cross the zero of the ratio to be about 15 GeV2. In addition the double ratio data of the proton EM form factors in He-4 and H nuclei, [G(Ep)(4He)(Q(2))/G(Mp)(4He)(Q(2))]/[G(Ep)(1H)(Q(2))/G(Mp)(1H)(Q(2))], extracted by the polarized ((e) over right arrow ,e',(p) over right arrow) scattering experiment on He-4 at JLab, are well described. We also predict that the Q(0)(2) value satisfying mu(p)G(Ep)(Q(0)(2))/G(Mp)(Q(0)(2)) = 0 in symmetric nuclear matter, shifts to a smaller value as increasing nuclear matter density, which reflects the facts that the faster falloff of G(Ep)(Q(2)) as increasing Q(2) and the increase of the proton mean-square charge radius. Furthermore, we calculate the neutron EM form factor double ratio in symmetric nuclear matter for 0.1 Q(2) 1.0 GeV2. The result shows that the neutron double ratio is enhanced relative to that in vacuum, while for the proton it is quenched, and agrees with an existing theoretical prediction.
机译:我们在使用由Quark-Meson耦合模型计算的中介质输入来研究对称核物质中的核仁电磁(EM)形成因子以及在光前进的方法内真空。相同的中型夸克属性用作用于研究中型型磁场特性的急剧性质。真空的质子EM形状比的零,真空,电磁性外形μm(p)g(q(q(2))/ g(mp)(q(2))(q(2)= -q(2)大于0 q是四动量转移),确定包括执行在核子波函数的硬组分夸克组件的最新实验数据。对于真空中的比率mu(p)g(q(2))(q(2))(q(2))来实现合理的拟合,并且我们预测Q(0)(2)值将比例的零交叉约为15 GEV2。另外,HE-4和H核的质子EM形状因子的双重比例,[G(EP)(4HE)(Q(2))/ g(麦克风)(4HE)(Q(2))] / [g(EP)(1H)(Q(2))/ g(MP)(1H)(Q(2))],由偏振((e)右箭头,e',(p)右侧箭头)JLAB的HE-4散射实验良好描述。我们还预测Q(0)(2)值满足MU(P)G(EP)(Q(0)(2))/ g(Q(0)(2))= 0在对称核中物质,转移到较小的值作为增加的核物质密度,这反映了G(EP)(Q(2))的更快衰落作为增加Q(2)和质子均方电荷半径的增加。此外,我们计算对称核物质中的中子EM形式的双重比0.1& Q(2)& 1.0 GEV2。结果表明,相对于真空中的中子双比率增强,同时淬火的质子,并同意现有的理论预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号