论文标题
高能颗粒和恒星形成区域的辐射
High-energy particles and radiation in star-forming regions
论文作者
论文摘要
非热颗粒和高能辐射可以在星形区域的动力学过程中发挥作用,并提供其结构和组件的多波长观察图的重要部分。众所周知,在大型恒星和OB关联的紧凑型簇中,强大的恒星风和超新星是高能颗粒加速度的有利位点,是非热辐射和中微子的来源。也就是说,年轻的巨大恒星群可能是PEV(Petaelectronvolt)政权宇宙射线(CRS)的来源。它们还可以负责宇宙射线组成,例如CRS中的22NE/20NE异常比率。有效的颗粒加速度可以伴随着通过CR驱动的不稳定性转换为风和超新星动力的系统中波动磁场的超绝热扩增。来源附近的逃生和Cr传播受非线性CR反馈的影响。这些影响预计在产生高能中微子和伽玛射线的Starburst星系中很重要。我们简要审查了有关高能颗粒加速度的理论模型和观察数据,及其在年轻恒星种群的星形地区的辐射。
Non-thermal particles and high-energy radiation can play a role in the dynamical processes in star-forming regions and provide an important piece of the multiwavelength observational picture of their structure and components. Powerful stellar winds and supernovae in compact clusters of massive stars and OB associations are known to be favourable sites of high-energy particle acceleration and sources of non-thermal radiation and neutrinos. Namely, young massive stellar clusters are likely sources of the PeV (petaelectronvolt) regime cosmic rays (CRs). They can also be responsible for the cosmic ray composition, e.g., 22Ne/20Ne anomalous isotopic ratio in CRs. Efficient particle acceleration can be accompanied by super-adiabatic amplification of the fluctuating magnetic fields in the systems converting a part of kinetic power of the winds and supernovae into the magnetic energy through the CR-driven instabilities. The escape and CR propagation in the vicinity of the sources are affected by the non-linear CR feedback. These effects are expected to be important in starburst galaxies, which produce high-energy neutrinos and gamma-rays. We give a brief review of the theoretical models and observational data on high-energy particle acceleration and their radiation in star-forming regions with young stellar population.