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The properties of hadronic matter at β equilibrium in a wide range of densities are described by appropriate equations of state in the framework of the relativistic mean field model. Strange meson fields, namely the scalar meson field σ*(975) and the vector meson field φ(1020), are included in the present work. We discuss and compare the results of the equation of state, nucleon effective mass, and strangeness fraction obtained by adopting the TM1, TMA, and GL parameter sets for nuclear sector and three different choices for the hypcron couplings. We find that the parameter set TM1 favours the onset of hyperons most, while at high densities the GL parameter set leads to the most hyperon-rich matter. For a certain parameter set (e.g. TM1), the most hyperon-rich matter is obtained for the hyperon potential model. The influence of the hyperon couplings on the effective mass of nucleon, is much weaker than that on the nucleon parameter set. The nonstrange mesons dominate essentially the global properties of dense hyperon matter. The hyperon potential model predicts the lowest value of the neutron star maximum mass of about 1.45 Msun to be 0.4--0.5 Msun lower than the prediction by using the other choices for hyperon couplings.[第一段] 相似文献
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利用Brueckner-Hartree-Fock和BCS理论方法,计算了非对称核物质中处于1S0态的质子和中子的对关联能隙,着重研究和讨论了能隙的同位旋依赖性和三体核力的影响.结果表明:随核物质的同位旋非对称度增大,中子1S0态超流相存在的密度范围逐渐缩小而且对关联能隙峰值稍有升高;质子1S0态超流相存在的密度范围迅速扩大而且对关联能隙峰值显著降低.三体核力对非对称核物质中1S0态中子超流性及其同位旋依赖性的影响相对较小,但对1S0态质子超流性具有重要影响,而且其效应随核子数密度增大而迅速增强.三体核力的主要作用是强烈地抑制了具有高非对称度的核物质中高密度区域的1S0态质子超流性,导致质子超流相存在的密度范围显著缩小.
关键词:
同位旋非对称核物质
质子和中子超流性
三体核力
BCS理论 相似文献
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Mirror energy difference is a key observable in isospin symmetry breaking, containing rich information about nuclear structure. Understanding the mechanisms underlying mirror energy difference is important in nuclear physics. In the present work, we extensively investigated mirror energy difference using ab initio valence-space inmedium similarity renormalization group approach, focusing specifically on sd-shell nuclei. The low-lying spectra of Al isotopes and N = 8 isotones, together with their... 相似文献
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在最近几年我们通过使用同位旋相关的量子分子动力学模型(IQMD)系统的研究了同位旋相关的平均场和介质中核子-核子(N-N)碰撞截面对中能重离子碰撞(HIC)中碎裂和耗散的同位旋效应。我们发现原子核阻R和Qzz,中等质量碎片多重性Nimf和质子(中子)发射数Np(Nn)敏感的依赖于介质中N-N碰撞截面的同位旋效应,而弱的依赖于同位旋相关的平均场(对称势),这些物理量作为提取相对高能范围缺中子系统的同位旋相关介质中N-N碰撞截面的探针。我们也可以通过相对低能区到150MeV/u的前平衡核子发射中质比来提取关于对称势的知识和讨论它的同位旋依赖性。 相似文献
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在微观多体Brueckner-Hartree-Fock理论框架内, 实现了三体核力对核物质中单核子势的重排贡献的计算, 研究了三体核力重排贡献对单核子平均势场的动量相关性和密度依赖性的影响. 另外, 还计算了核物质中核子的有效质量并着重讨论了三体核力重排效应的影响. 结果表明: 三体核力对单核子势的重排贡献具有排斥性, 而且三体核力的重排效应随动量和密度的增加而迅速增强; 在高密度和高动量区域这一排斥贡献具有很强的动量相关性并起到了减弱单核子势吸引性和增强单核子势动量相关性的重要作用, 有助于澄清非相对论性BHF平均势场在高密度和高动量区域吸引性过强和动量相关性过弱的问题. 相似文献
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对超重核基态性质的系统性研究 总被引:1,自引:0,他引:1
对有限力程小液滴模型计算的质子数z=101—130超重核同位素链核的基态性质进行了系统的分析,通过对这些同位素链中处于裂变稳定线上核的平均结合能、四极形变、单质子分离能、双质子分离能和a衰变能等性质的系统研究,显示了质子数Z=108,114,126和中子数N=162,180,196时壳幻数的存在,同时可以看到Z=127之后超重核的基态性质还需要进一步研究。The calculated data by the Finite Range Droplet Model (FRDM) for the ground state properties of super-heavy nuclear isotope chains from Z=101 to Z=130 are analyzed in a global systematic way. Some quantities of the super-heavy nuclei which lie on the line of stability agains fission, such as the mean binding energy, deformation, single and double proton separation energy, as well as the α decay energy indicate the existence of the shell closure positions at Z=108, 114 and 126 and N=162... 相似文献
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