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Neutron Star Physics and EOS

机译:中子星物理和eos

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Neutron stars are important because measurement of their masses and radii will determine the dense matter equation of state. They will constrain the nuclear matter symmetry energy, which controls the neutron star matter pressure and the interior composition, and will influence the interpretation of nuclear experiments. Astrophysical observations include pulsar timing, X-ray bursts, quiescent low-mass X-ray binaries, pulse profiles from millisecond pulsars, neutrino observations from gravitational collapse supernovae,and gravitational radiation from compact object mergers. These observations will also constrain the neutron star interior, including the properties of superfluidity there, and determine the existence of a possible QCD phase transition.
机译:中子恒星很重要,因为它们的质量和半径的测量将确定状态的致密性方程。它们将限制核物质对称能量,控制中子星形压力和内部组成,并影响核实验的解释。天体物理观测包括脉冲节定时,X射线突发,静态低质量X射线二进制文件,来自毫秒脉冲条件的脉冲型材,来自重力塌陷超胃的中性观察,以及来自紧凑的物体合并的重力辐射。这些观察结果还将限制中子星内部,包括那里的超浊度的性质,并确定可能的QCD相转变的存在。

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