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Examination of strangeness instabilities and effects of strange meson couplings in dense strange hadronic matter and compact stars

机译:思想奇怪缘偏振物与近奇辐射物质和紧凑型恒星的影响

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Background: The emergence of hyperon degrees of freedom in neutron star matter has been associated to first-order phase transitions in some phenomenological models, but conclusions on the possible physical existence of an instability in the strangeness sector are strongly model dependent. Purpose: The purposes of the present study are to assess whether strangeness instabilities are related to specific values of the largely unconstrained hyperon interactions and to study the effect of the strange meson couplings on phenomenological properties of neutron stars and supernova matter, once these latter are fixed to fulfill the constraints imposed by hypernuclear data. Method: We consider a phenomenological relativistic mean field model (RMF) model sufficiently simple to allow a complete exploration of the parameter space. Results:We show that no instability at supersaturation density exists for the RMF model, as long as the parameter space is constrained by basic physical requirements. This is at variance with a nonrelativistic functional, with a functional behavior fitted through ab initio calculations. Once the study is extended to include the full octet, we show that the parameter space allows reasonable radii for canonical neutron stars as well as massive stars above two-solar mass, together with an important strangeness content of the order of 30%, slightly decreasing with increasing entropy, even in the absence of a strangeness-driven phase transition. Conclusions:We conclude that the hyperon content of neutron stars and supernova matter cannot be established with present constraints, and is essentially governed by the unconstrained coupling to the strange isoscalar meson.
机译:背景:中子星物中高速度自由度的出现与一定的现象学模型中的一阶相转变有关,但是关于易于稳定性扇区的不稳定性的可能性存在的结论是依赖性的。目的:本研究的目的是评估奇怪不稳定性是否与主要不受约束的超常数相互作用的特定值相关,并研究奇怪的MESON联轴器对中子恒星和超新星的现象学特性的影响,这是一旦这些后者固定符合超核数据施加的约束。方法:我们考虑一种现象学相对论平均场模型(RMF)模型足够简单,以允许完全探索参数空间。结果:我们表明,RMF模型的存在在超饱和密度下不稳定性,只要参数空间受到基本物理要求的约束。这与非椭圆体函数的差异,具有通过AB Initio计算的功能行为。一旦该研究扩展到包括全八位字节,我们表明参数空间允许合理的半径用于典型的中子恒星以及两种太阳能高于两种太阳能的恒星,以及略微减少的重要奇异含量。略微降低随着熵的增加,即使在没有易于驱动的阶段转换的情况下也是如此。结论:我们得出结论,中子恒星和超新星物质的高速含量不能与当前约束建立,基本上受到奇怪isoscalar·莫斯逊的无约束偶联的。

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  • 来源
    《Physical Review C》 |2017年第2017期|025201.1-025201.12|共12页
  • 作者单位

    Departamento de Fisica CFM Universidade Federal de Santa Catarina Florianopolis SC CP 476 CEP 88.040-900 Brazil;

    CNRS and ENSICAEN UMR6534 LPC 14050 Caen cedex France;

    Departamento de Fisica CFM Universidade Federal de Santa Catarina Florianopolis SC CP 476 CEP 88.040-900 Brazil;

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