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Chiral condensate in nuclear matter beyond linear density using chiral Ward identity

机译:使用手性沃德身份的核物质中的手性冷凝物超出线性密度

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摘要

We discuss density corrections of the chiral condensate up to a NLO order using the chiral Ward identity and an in-medium chiral perturbation theory. The in-medium chiral condensate is calculated by a correlation function of the axial current and pseudoscalar density in the nuclear matter as a consequence of the chiral Ward identity. The correlation function is evaluated using the chiral perturbation theory with the hadronic quantities of pion-nucleon dynamics. We assume that the in-vacuum interaction vertices are known, which means that the in-vacuum loop corrections are renormalized to the tree chiral couplings by taking the values of the couplings in chiral Lagrangian as the physical values. We focus on density order in the physical quantities in our perturbative calculation. This study shows that the medium effects to the chiral condensate beyond the linear density come from density corrections to the πN sigma term. It implies that calculating the density dependence of the chiral condensate in nuclear matter is essentially equivalent to describe nuclear matter in chiral effective theory.* This work was supported by the Grant-in-Aid for the Global COE Program “The Next Generation of Physics, Spun from Universality and Emergence“ from theMinistry of Education, Culture, Sports, Science and Technology (MEXT) of Japan.
机译:我们讨论了使用手性病房特征和中等手性扰动理论对手性冷凝物的密度校正,直至达到NLO级。由于手性沃德身份,核内物质中的轴向电流与拟标量密度的相关函数可计算出中等手性冷凝物。相关函数是使用手性摄动理论和π-核子动力学的强子量来评估的。我们假设真空中的相互作用顶点是已知的,这意味着通过将手性拉格朗日方程中的耦合值作为物理值,将真空中环校正重新规范化为树型手性耦合。在微扰计算中,我们关注物理量中的密度顺序。这项研究表明,超出线性密度对手性缩合物的介质影响来自对πNsigma项的密度校正。这意味着计算手性冷凝物在核物质中的密度依赖性基本上等同于在手性有效理论中描述核物质。*这项工作得到了全球COE计划“下一代物理学,日本教育,文化,体育,科学和技术部(MEXT)的“从普遍性和新兴性中脱颖而出”。

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