论文标题
宇宙射线是原始银河生态系统中的反馈剂
Cosmic rays as a feedback agent in primordial galactic ecosystems
论文作者
论文摘要
最近发现了高红移原始星系,恒星种群和复杂的恒星形成历史可追溯到大爆炸后的250 Myr。它们的强烈恒星形成似乎与持续的强烈淬火时期散布在一起,但是这种进化行为的基础过程尚不清楚。与后来的时期不同,早期宇宙中的星系不在群集等大型关联中。取而代之的是,它们与开发的环境光环作为相对孤立的生态系统共同发展。因此,可能导致其恒星形成的机制可能是内在的,与其强烈的星爆发作相关的反馈过程可能起重要作用。宇宙射线是提供此反馈的可行代理,可以解释这些系统推断的星形成历史。可以使用新的和即将到来的设施的舰队获得的大量多波长数据来研究宇宙射线对星系的影响。可以将其在电磁频谱中探测其作用的互补方法可以布置到宇宙射线反馈特征的距离阶梯中。有了清楚地了解原始系统中的宇宙射线活性,可以将此梯子扩展到高红移,并在宇宙射线在宇宙时间内塑造星系演化中所起的作用。
High-redshift primordial galaxies have recently been found with evolved stellar populations and complex star-formation histories reaching back to 250 Myr after the Big Bang. Their intense bursts of star-formation appear to be interspersed with sustained periods of strong quenching, however the processes underlying this evolutionary behaviour remain unclear. Unlike later epochs, galaxies in the early Universe are not located in large associations like clusters. Instead, they co-evolve with their developing circumgalactic halo as relatively isolated ecosystems. Thus, the mechanisms that could bring about the downfall of their star-formation are presumably intrinsic, and feedback processes associated with their intense starburst episodes likely play an important role. Cosmic rays are a viable agent to deliver this feedback, and could account for the star-formation histories inferred for these systems. The cosmic ray impact on galaxies may be investigated using the wealth of multi-wavelength data soon to be obtained with the armada of new and upcoming facilities. Complementary approaches to probe their action across the electromagnetic spectrum can be arranged into a distance ladder of cosmic ray feedback signatures. With a clear understanding of how cosmic ray activity in primordial systems can be traced, it will be possible to extend this ladder to high redshifts and map-out the role played by cosmic rays in shaping galaxy evolution over cosmic time.