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首页> 外文期刊>The Astrophysical journal >CAN LIFE SURVIVE GAMMA-RAY BURSTS IN THE HIGH-REDSHIFT UNIVERSE?
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CAN LIFE SURVIVE GAMMA-RAY BURSTS IN THE HIGH-REDSHIFT UNIVERSE?

机译:可以承受高辐射宇宙中伽玛射线爆炸的生命吗?

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Nearby gamma-ray bursts (GRBs) have been proposed as a possible cause of mass extinctions on Earth. Due to the higher event rate of GRBs at higher redshifts, it has been speculated that life as we know it may not survive above a certain redshift (e.g., ). We examine the duty cycle of lethal (life-threatening) GRBs in the solar neighborhood, in the Sloan Digital Sky Survey (SDSS) galaxies, and GRB host galaxies, with the dependence of the long GRB rate on star formation and metallicity properly taken into account. We find that the number of lethal GRBs attacking Earth within the past 500 Myr (~epoch of the Ordovician mass extinction) is 0.93. The number of lethal GRBs hitting a certain planet increases with redshift, as a result of the increasing star formation rate (SFR) and decreasing metallicity in high-z galaxies. Taking 1 per 500 Myr as a conservative duty cycle for life to survive, as evidenced by our existence, we find that there is still a good fraction of SDSS galaxies beyond where the GRB rate at half-mass radius is lower than this value. We derive the fraction of such benign galaxies as a function of redshift through Monte Carlo simulations, and we find that the fraction is at and even at . The mass distribution of benign galaxies is dominated by Milky Way–like ones, due to their commonness, relatively large mass, and low SFR. GRB host galaxies are among the most dangerous ones.
机译:已经提出了附近的伽马射线爆发(GRB)作为地球上生物灭绝的可能原因。由于在较高的红移情况下GRB的事件发生率较高,据推测,我们所知的生命可能无法在某个特定的红移之上生存(例如)。我们在Sloan数字天空调查(SDSS)星系和GRB宿主星系中研究了太阳邻区中致命(威胁生命)的GRB的占空比,并适当考虑了长GRB速率对恒星形成和金属性的依赖性帐户。我们发现在过去的500 Myr(奥陶纪大灭绝的纪元)内攻击地球的致命GRB数量为0.93。由于高Z星系中恒星形成率(SFR)的增加和金属性的降低,命中某个行星的致命GRB的数量随红移而增加。我们的存在证明,以每500 Myr 1作为生存的保守工作周期,我们发现SDSS星系中仍有相当一部分,超过半质量半径GRB率低于此值的地方。通过蒙特卡洛模拟,我们得出了这些良性星系的分数作为红移的函数,并且发现该分数在甚至在。良性星系的质量分布以银河系为主,因为它们具有共同性,相对较大的质量和较低的SFR。 GRB宿主星系是最危险的星系之一。

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