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Similar phenomena at different scales: black holes, the Sun, 'y-ray bursts, supernovae,galaxies and galaxy clusters

机译:不同尺度的类似现象:黑洞,太阳,'y射线爆裂,超新星,星系和星系集群

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Many similar phenomena occur in astrophysical systems with spatial and mass scales different by many orders of magnitudes. For examples, collimated outflows are produced from the Sun, proto-stellar systems, gamma-ray bursts, neutron star and black hole X-ray binaries, and supermassive black holes; various kinds of flares occur from the Sun, stellar Coronae, X-ray binaries and active galactic nuclei; shocks and particle acceleration exist in supernova remnants, gamma-ray bursts, clusters of galaxies, etc. In this report I summarize briefly these phenomena and possible physical mechanisms responsible for them. I emphasize the importance of using the Sun as an astrophysical laboratory in studying these physical processes, especially the roles magnetic fields play in them; it is quite likely that magnetic activities dominate the fundamental physical processes in all of these systems. As a case study, I show that X-ray lightcurves from solar flares, black hole binaries and gammaray bursts exhibit a common scaling law of non-linear dynamical properties, over a dynamical range of several orders of magnitudes in intensities, implying that many basic X-ray emission nodes or elements are inter-connected over multi-scales. A future high timing and imaging resolution solar X-ray instrument, aimed at isolating and resolving the fundamental elements of solar X-ray lightcurves, may shed new lights onto the fundamental physical mechanisms, which are common in astrophysical systems with vastly different mass and spatial scales. Using the Sun as an astrophysical laboratory, "Applied Solar Astrophysics" will deepen our understanding of many important astrophysical problems.
机译:许多类似的现象发生在天体物理系统中,其空间和质量尺度不同的级别不同。例如,准直的外流由太阳,原恒星系统,伽马射线爆裂,中子星和黑洞X射线二进制文件制成,以及超大分类的黑洞;各种耀斑发生在太阳,恒星冠状动脉,X射线二进制中和活性银核; Supernova残余物,伽马射线爆发,星系集群中存在冲击和粒子加速等。在本报告中,我简要概述了这些现象和可能对他们负责的可能性机制。我强调使用太阳作为学习这些物理过程的天体物理实验室的重要性,特别是角色磁场在它们中起作用;磁性活动很可能在所有这些系统中占主导地位的基本物理过程。作为一个案例研究,我表明,来自太阳耀斑,黑洞二进制文件和伽马河突发的X射线电压表现出非线性动力学特性的共同缩放规律,在一个强度的几个大小的动态范围内,这意味着许多基本X射线发射节点或元素在多尺度上互连。旨在隔离和解析太阳X射线电压的基本要素的未来高时序和成像太阳X射线仪器可以将新灯缩小到基本的物理机制上,这在具有巨大不同质量和空间的天体物理系统中常见秤。使用太阳作为天体物理实验室,“应用太阳能天体物理学”将深化我们对许多重要的天体问题的理解。

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