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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >The binary systems associated with short and long gamma-ray bursts and their detectability
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The binary systems associated with short and long gamma-ray bursts and their detectability

机译:与短伽马射线突发相关的二元系统及其可检测性

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Short and long-duration gamma-ray bursts (GRBs) have been recently sub-classified into seven families according to the binary nature of their progenitors. For short GRBs, mergers of neutron star binaries (NS-NS) or neutron star-black hole binaries (NS-BH) are proposed. For long GRBs, the induced gravitational collapse (IGC) paradigm proposes a tight binary system composed of a carbon-oxygen core (COcore) and a NS companion. The explosion of the COcore as supernova (SN) triggers a hypercritical accretion process onto the NS companion which might reach the critical mass for the gravitational collapse to a BH. Thus, this process can lead either to a NS-BH or to NS-NS depending on whether or not the accretion is sufficient to induce the collapse of the NS into a BH. We shall discuss for the above compact object binaries: (1) the role of the NS structure and the equation-of-state on their final fate; (2) their occurrence rates as inferred from the X and gamma-ray observations; (3) the expected number of detections of their gravitational wave (GW) emission by the Advanced LIGO interferometer.
机译:短期和长期伽马射线爆发(GRB)最近根据其祖细胞的二进制性分类为七个家庭。对于短GRB,提出了中子星二进制文件(NS-NS)或中子星形孔二进制(NS-BH)的合并。对于长GRBS,诱导的引力塌陷(IGC)范式提出了由碳 - 氧核心(Cocore)和NS伴侣组成的紧密二元系统。作为超新星(Sn)的Cocore爆炸触发到NS伴侣上的高度临界增齿过程,这可能达到引力塌陷至BH的临界质量。因此,根据是否足以诱导NS的坍塌成BH,该过程可以引入NS-BH或NS-NS。我们将讨论上述紧凑型对象二进制文件:(1)NS结构的作用和最终命运的状态方程; (2)从X和伽马射线观测中推断出它们的发生率; (3)先进的Ligo干涉仪的预期重力波(GW)排放的预期检测。

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