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Constraining the Hadron-Quark Phase Transition Chemical Potential via Astronomical Observation

机译:通过天文观察约束Holron-Quark相转变化学潜力

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We investigate the chemical potential and baryon number density of the hadron-quark phase transition in neutron star matter. The hadron matter is described with the relativistic mean field theory, and the quark matter is described with the Dyson-Schwinger equation approach of QCD. In order to study the first-order phase transition, we develop the sound speed interpolation scheme to construct the equation of state in the middle density region where the hadron phase and quark phase coexist. The phase transition chemical potential is constrained with the maximum mass, the tidal deformability and the radius of neutrons stars. And the most probable value of the phase transition chemical potential is found.
机译:我们调查中子星形物中Holron-Quark相转变的化学势和Baryon数密度。利用相对论的平均场理论描述了强子物质,夸克物质描述了QCD的Dyson-Schwinger方程方法。为了研究一阶相转变,我们开发声速插值方案,以构建具有强子相位和夸克相中共存的中间密度区域中的状态的等式。相转移化学电位受到最大质量,潮汐可变形性和中子星半径的约束。发现相转移化学潜力的最可能值。

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