论文标题
CRPROPA 3.2-用于高能颗粒繁殖的高级框架,在乳层和银河系空间中
CRPropa 3.2 -- an advanced framework for high-energy particle propagation in extragalactic and galactic spaces
论文作者
论文摘要
在过去的十年中,高和超高的天体物理学的景观发生了变化,这在很大程度上是由于大规模宇宙射线,伽马射线和中微子观测值收集的数据流入。在多通之间时代的曙光中,在一致的框架内对这些观察的解释对于阐明该领域的开放问题很重要。 CRPROPA 3.2是模拟宇宙中高能量颗粒的传播的蒙特卡洛代码。此版本代表了一个重大的飞跃,大大扩展了模拟框架,并为更多的天体物理应用打开了可能性。其中包括:在扩散为主导的结构域中对高能颗粒的有效模拟,电磁级联反抗和快速建模,具有用于光子生产的扩展通道的电磁级联,以及基于更新的相干和湍流磁场模型的宇宙射线扩散量。此外,使用新版本引入了几种技术更新和改进,例如:增强的插值,有针对性的来源和新的传播算法(Boris Push)。所有新颖特征的详细描述都伴随着讨论和选定数量的示例应用程序。
The landscape of high- and ultra-high-energy astrophysics has changed in the last decade, largely due to the inflow of data collected by large-scale cosmic-ray, gamma-ray, and neutrino observatories. At the dawn of the multimessenger era, the interpretation of these observations within a consistent framework is important to elucidate the open questions in this field. CRPropa 3.2 is a Monte Carlo code for simulating the propagation of high-energy particles in the Universe. This version represents a major leap forward, significantly expanding the simulation framework and opening up the possibility for many more astrophysical applications. This includes, among others: efficient simulation of high-energy particles in diffusion-dominated domains, self-consistent and fast modelling of electromagnetic cascades with an extended set of channels for photon production, and studies of cosmic-ray diffusion tensors based on updated coherent and turbulent magnetic-field models. Furthermore, several technical updates and improvements are introduced with the new version, such as: enhanced interpolation, targeted emission of sources, and a new propagation algorithm (Boris push). The detailed description of all novel features is accompanied by a discussion and a selected number of example applications.