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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Gamma and neutrino radiation dose from gamma ray bursts and nearby supernovae.
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Gamma and neutrino radiation dose from gamma ray bursts and nearby supernovae.

机译:γ和中微子从伽马射线辐射剂量和附近的超新星爆发。

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摘要

Supernovae and gamma ray bursts are exceptionally powerful cosmic events that occur randomly in space and time in our galaxy. Their potential to produce very high radiation levels has been discussed, along with speculation that they may have caused mass extinctions noted from the fossil record. It is far more likely that they have produced radiation levels that, while not lethal, are genetically significant, and these events may have influenced the course of evolution and the manner in which organisms respond to radiation insult. Finally, intense gamma radiation exposure from these events may influence the ability of living organisms to travel through space. Calculations presented in this paper suggest that supernovae and gamma ray bursts are likely to produce sea-level radiation exposures of about I Gy with a mean interval of about five million years and sea-level radiation exposures of about 0.2 Gy every million years. Comets and meteors traveling through space would receive doses in excess of 10 Gy at a depth of 0.02 m at mean intervals of 4 and 156 million years, respectively. This may place some constraints on the ability of life to travel through space either between planets or between planetary systems. Calculations of radiation dose from neutrino radiation are presented and indicate that this is not a significant source of radiation exposure for even extremely close events for the expected neutrino spectrum from these events.
机译:超新星和伽马射线爆发异常强大的宇宙随机发生的事件时间和空间在我们的星系。产生的辐射水平已经非常高讨论,以及他们可能的猜测造成大规模灭绝指出的吗化石记录。产生的辐射水平,不是吗致命的,基因显著,这些事件可能影响的过程进化和生物的方式对辐射的侮辱。从这些事件可能γ辐射影响生物的能力在太空中旅行。本文表明超新星和伽马射线爆发可能会产生海平面辐射敞口约我和平均间隔Gy约五百万年,海平面辐射每百万年敞口约为0.2 Gy。彗星和流星穿越空间接受剂量超过10 Gy的深度0.02米的平均间隔4 - 1.56亿年,分别。限制旅行生活的能力通过空间之间的行星或之间行星系统。从中微子辐射,表明这不是一个的重要来源辐射,即使是极其密切的事件预期的中微子频谱这些事件。

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