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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Deconfinement of nonstrange hadronic matter with nucleons and Delta baryons to quark matter in neutron stars
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Deconfinement of nonstrange hadronic matter with nucleons and Delta baryons to quark matter in neutron stars

机译:Nucleors和Delta Baryons对Nutrange Phronic物质与中子恒星夸克物质的解构

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We explore the possibility of formation of Delta baryons (1232 MeV) in neutron star matter in an effective chiral model within the relativistic mean-field framework. With variation in delta-meson couplings, consistent with the constraints imposed on them, the resulting equation-of-state (EoS) is obtained and the neutron star properties are calculated for static and spherical configuration. Within the framework of our model, the critical densities of formation of Delta s and the properties of neutron stars (NS) are found to be very sensitive to the iso-vector coupling compared to the scalar or vector couplings. We revisit the Delta puzzle and look for the possibility of phase transition from nonstrange hadronic matter (including nucleons and Delta s) to deconfined quark matter, based on QCD theories. The resultant hybrid star configurations satisfy the observational constraints on mass from the most massive pulsars PSR J1614-2230 and PSR J0348+0432 in static condition obtained with the general hydrostatic equilibrium based on GTR. Our radius estimates are well within the limits imposed from observational analysis of QLMBXs. The obtained values of R-1.4 are in agreement with the recent bounds specified from the observation of gravitational wave (GW170817) from binary neutron star merger. The constraint on baryonic mass from the study of binary system PSR J0737-3039 is also satisfied with our hybrid EoS.
机译:我们探讨了相对论平均场框架内的有效手性模型中中子星形物中中子星形物中的三角形(1232mev)的可能性。随着Δ-Meson联轴器的变化,与施加的约束一致,获得所得到的状态方程(EOS),并且计算中子星特性以静态和球形构造。在我们模型的框架内,发现ΔS的形成和中子恒星(NS)的性质的关键密度对与标量或向量耦合相比的ISO-向量耦合非常敏感。我们重新审视Δ拼图,并寻找基于QCD理论的非特兰脊髓型物质(包括核磁和ΔS)从非谐波物质(包括核磁和三角洲)的可能性。所得到的混合星形构造满足来自基于GTR的一般静液压平衡获得的静态条件的质量对质量的观察约束。我们的RADIUS估计良好地在QLMBX的观察分析中的限制范围内。所获得的R-1.4的值与从二元中子星合并的引力波(GW170817)观察的最近指定的界限一致。来自二元系统PSR J0737-3039研究的辐射质量的约束也对我们的混合EOS感到满意。

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