论文标题
脉冲星风云的理论:最近的进步
The theory of Pulsar Wind Nebulae: recent progress
论文作者
论文摘要
在许多方面,脉冲星风云是高度吸引人的天体物理物体。它们是相对论来源的最鲜明,最亲密的类别,因此可以用独特的细节来研究相对论等离子体物理学的最终实验室:在其他类别的相对论来源中观察到的几个过程(或推断出来),例如加速度和相对论性的超出性或准确性的颗粒物的加速度,或者是粒子的准确性。 在这里,我根据这些来源的最新2d和3d MHD建模,回顾了我们对脉冲星风云的理论理解的当前状态。我将讨论这些研究如何使我们能够可靠地使用对这些星云的多波长观察结果作为脉冲星风的隐藏物理学以及在高度重大主义的冲击中加速颗粒的机制的诊断。 最后,我将简要讨论进化的脉冲星云模型的建模以及颗粒从这些系统中逃脱的最新进展。这项努力对可靠地评估脉冲星作为宇宙射线卵子来源的作用至关重要,并且最近被认为对银河系中的宇宙射线传输也具有重要意义。
Pulsar Wind Nebulae are highly intriguing astrophysical objects in many respects. They are the brightest and closest class of relativistic sources, and hence the ultimate laboratory for the physics of relativistic plasmas: several processes observed (or inferred to occur) in other classes of relativistic sources can here be studied with unique detail, like the acceleration and collimation of relativistic outflows, or the acceleration of particles at relativistic shocks. Here I review the current status of our theoretical understanding of Pulsar Wind Nebulae in light of the most recent 2D and 3D MHD modelling of these sources. I will discuss how these studies are taking us to the point when we can reliably use multi-wavelength observations of these nebulae as a diagnostics of the hidden physics of the pulsar wind and of the mechanism(s) through which particles are accelerated at the highly relativistic shock that terminates the wind. Finally I will briefly discuss recent progress in the modelling of evolved Pulsar Wind Nebulae and of the escape of particles from these systems. This effort is instrumental to credibly assess the role of Pulsar Winds as sources of cosmic ray leptons, and has recently been recognised to have important implications also on cosmic ray transport in the Galaxy.