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The formation and merger of compact objects in central engine of active galactic nuclei and quasars: gamma-ray burst and gravitational radiation

机译:活跃银河核和类星体中央引擎中紧凑物体的形成和合并:伽马射线爆发和引力辐射

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摘要

The production rate of compact objects, i.e. neutron stars (NS) and black holes (BH), in active galactic nuclei (AGN) and quasars (QSO), where the frequent supernova explosion is used to explain the high metallicity, is very high due to the interaction between the accretion disk and main sequence stars in the nucleus of the quasar. The compact object-red giant star (RG) binaries can be easily formed due to the large captured cross-section of the red giant stars. The (NS/BH, NS/BH) binary can be formed after the supernova explosion of the (NS/BH, RG) binary. Intense transient gamma-ray emission (gamma-ray burst) and gravitational radiation can result from the merger of these two compact objects. Collision between helium core (Hc) of RG and black hole may also take place and may also result in long duration gamma-ray bursts but no gravitational waves. We estimate that the merger rate of (NS/BH, NS/BH) binaries and (Hc, BH) is proportional to the metal abundance $({\rm per year per AGN/QSO.
机译:由于活跃的银河核(AGN)和类星体(QSO)中频繁发生的超新星爆炸来解释高金属性,致密物体(即中子星(NS)和黑洞(BH))的生产率非常高,这是由于吸积盘与类星体核中主序星之间的相互作用。由于红色巨星的捕获截面大,因此可以轻松形成紧凑的物体-红色巨星(RG)双星。 (NS / BH,NS / BH)双星可以在(NS / BH,RG)双星超新星爆炸后形成。这两个紧凑物体的合并会导致强烈的瞬态伽马射线发射(伽马射线猝发)和重力辐射。 RG的氦核(Hc)与黑洞之间也可能发生碰撞,并可能导致长时间的伽马射线爆发,但没有引力波。我们估计(NS / BH,NS / BH)二进制文件和(Hc,BH)的合并率与金属丰度$({\ rm每AGN / QSO每年。

著录项

  • 作者

    Cheng, K S; Wang, J M;

  • 作者单位
  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 eng
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