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Neutrino Emissivity in the Quark-Hadron Mixed Phase

机译:Quark-Hadron混合相中的中微子发射率

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In this work we investigate the effect a crystalline quark–hadron mixed phase can have on the neutrino emissivity from the cores of neutron stars. To this end we use relativistic mean-field equations of state to model hadronic matter and a nonlocal extension of the three-flavor Nambu–Jona–Lasinio model for quark matter. Next we determine the extent of the quark–hadron mixed phase and its crystalline structure using the Glendenning construction, allowing for the formation of spherical blob, rod, and slab rare phase geometries. Finally, we calculate the neutrino emissivity due to electron–lattice interactions utilizing the formalism developed for the analogous process in neutron star crusts. We find that the contribution to the neutrino emissivity due to the presence of a crystalline quark–hadron mixed phase is substantial compared to other mechanisms at fairly low temperatures (?10 9 K) and quark fractions (?30%), and that contributions due to lattice vibrations are insignificant compared to static-lattice contributions. There are a number of open issues that need to be addressed in a future study on the neutrino emission rates caused by electron–quark blob bremsstrahlung. Chiefly among them are the role of collective oscillations of matter, electron band structures, and of gaps at the boundaries of the Brillouin zones on bremsstrahlung, as discussed in the summary section of this paper. We hope this paper will stimulate studies addressing these issues.
机译:在这项工作中,我们研究了晶体夸克-强子混合相对中子星核心中微子发射率的影响。为此,我们使用相对论的状态平均状态方程来建模强子物质和夸克物质的三味Nambu–Jona–Lasinio模型的非局部扩展。接下来,我们使用Glendenning结构确定夸克-强子混合相的程度及其晶体结构,从而允许形成球形斑点,棒状和平板状稀有相几何形状。最后,我们利用为中子星地壳的类似过程开发的形式论来计算由于电子-晶格相互作用而产生的中微子发射率。我们发现,在相当低的温度(?10 9 K)和夸克分数(?30%)下,与其他机理相比,由于存在晶体夸克-强子混合相而对中微子发射率的贡献很大。与静态晶格的贡献相比,晶格振动的影响微不足道。在未来的研究中,有许多悬而未决的问题需要解决,这些研究是由电子夸克斑点stra致辐射引起的中微子发射速率。如本文摘要部分所述,其中主要是物质,电子能带结构以及致辐射的布里渊区边界处的间隙的集体振荡的作用。我们希望本文能刺激解决这些问题的研究。

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