论文标题

通过sexaquark凝结在紧凑型恒星中夸克

Quark deconfinement in compact stars through sexaquark condensation

论文作者

Blaschke, D., Ivanytskyi, O., Shahrbaf, M.

论文摘要

在这项贡献中,我们首次提出了一个场景,根据该场景,紧凑型恒星中的早期夸克脱糊化是由轻度Sexaquark(S)的Bose-Einenstein凝结(BEC)触发的,其中质量为$ M_S <2054 $ MEV,这被认为是候选人的候选粒子来解释baryonic Darkate in Universitye in Universitye中的候选粒子。 S Bec的开始标志着Hadronic中子星的最大质量,并且发生在Baryon化学势$μ_b= m_s/2 $的情况下,在恒星的中心满足,对应于$ M _ {\ rm Onset} \ rm odSim 0.7〜m_ \ m_ \ odot $。在恒星的引力场中,S的BEC的密度增加了,直到达到物质的新状态为止,在此过程中,每个S态都被分离为颜色塑料(CFL)diquark状态的三胞胎。这些diquark是夸克物质颜色超导CFL相中的库珀对,因此开发的场景对应于强烈相互作用的物质中的BEC-BCS过渡。对于CFL阶段的描述,我们首次在这里开发了Quark物质的手性对称拉格朗日模型的密度功能配方的三种味道扩展,在低密度和温度下标量自我能量的差异中,限制性能在狭窄性能中编码。

In this contribution, we present for the first time a scenario according to which early quark deconfinement in compact stars is triggered by the Bose-Einstein condensation (BEC) of a light sexaquark (S) with a mass $m_S<2054$ MeV, that has been suggested as a candidate particle to explain the baryonic dark matter in the Universe. The onset of S BEC marks the maximum mass of hadronic neutron stars and it occurs when the condition for the baryon chemical potential $μ_b=m_S/2$ is fulfilled in the center of the star, corresponding to $M_{\rm onset}\lesssim 0.7~M_\odot$. In the gravitational field of the star the density of the BEC of the S increases until a new state of the matter is attained, where each of the S-states got dissociated into a triplet of color-flavor-locked (CFL) diquark states. These diquarks are the Cooper pairs in the color superconducting CFL phase of quark matter, so that the developed scenario corresponds to a BEC-BCS transition in strongly interacting matter. For the description of the CFL phase, we develop here for the first time the three-flavor extension of the density-functional formulation of a chirally symmetric Lagrangian model of quark matter where confining properties are encoded in a divergence of the scalar self-energy at low densities and temperatures.

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