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Habitability around F-type stars

机译:F型星的适居性

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We explore the general astrobiological significance of F-type main-sequence stars with masses between 1.2 and 1.5 M_⊙. Special consideration is given to stellar evolutionary aspects due to nuclear mainsequence evolution. DNAis taken as a proxy for carbon-based macromolecules following the paradigm that extraterrestrial biology may be most likely based on hydrocarbons. Consequently, theDNAaction spectrum is utilized to represent the impact of the stellar ultraviolet (UV) radiation. Planetary atmospheric attenuation is taken into account based on parameterized attenuation functions. We found that the damage inflicted on DNA for planets at Earth-equivalent positions is between a factor of 2.5 and 7.1 higher than for solar-like stars, and there are intricate relations for the time-dependence of damage during stellar main-sequence evolution. If attenuation is considered, smaller factors of damage are obtained in alignment to the attenuation parameters. This work is motivated by earlier studies indicating that the UV environment of solar-type stars is one of the most decisive factors in determining the suitability of exosolar planets and exomoons for biological evolution and sustainability.
机译:我们探索质量在1.2到1.5M_⊙之间的F型主序星的一般天体生物学意义。由于核主序进化,特别考虑了恒星的进化方面。遵循外星生物学最可能基于碳氢化合物的范式,DNA被视为碳基大分子的替代物。因此,DNA作用谱被用来代表恒星紫外线(UV)辐射的影响。基于参数化的衰减函数,应考虑行星大气的衰减。我们发现,对等价于地球的行星,其对DNA造成的损害要比类似太阳的恒星高2.5至7.1倍,并且在恒星主序演化过程中,损害的时间依赖性有着复杂的关系。如果考虑衰减,则根据衰减参数可以获得较小的损坏因子。这项工作受到早期研究的推动,这些研究表明,太阳型恒星的紫外线环境是确定外太阳系行星和外显子对生物进化和可持续性的适用性的最决定性因素之一。

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