首页> 外文期刊>The Astrophysical journal >Dots, Clumps, And Filaments: The Intermittent Images Of Synchrotron Emission In Random Magnetic Fields Of Young Supernova Remnants
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Dots, Clumps, And Filaments: The Intermittent Images Of Synchrotron Emission In Random Magnetic Fields Of Young Supernova Remnants

机译:点,团块和细丝:年轻超新星残余物的随机磁场中同步辐射的间歇性图像

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摘要

Nonthermal X-ray emission in some supernova remnants originates from synchrotron radiation of ultrarela-tivistic particles in turbulent magnetic fields. We address the effect of a random magnetic field on synchrotron emission images and spectra. A random magnetic field is simulated to construct synchrotron emission maps of a source with a steady distribution of ultrarelativistic electrons. Nonsteady localized structures (dots, clumps, and filaments), in which the magnetic field reaches exceptionally high values, typically arise in the random field sample. These magnetic field concentrations dominate the synchrotron emission (integrated along the line of sight) from the highest energy electrons in the cutoff regime of the distribution, resulting in an evolving, intermittent, clumpy appearance. The simulated structures resemble those observed in X-ray images of some young supernova remnants. The lifetime of X-ray clumps can be short enough to be consistent with that observed even in the case of a steady particle distribution. The efficiency of synchrotron radiation from the cutoff regime in the electron spectrum is strongly enhanced in a turbulent field compared to emission from a uniform field of the same magnitude.
机译:一些超新星残余物的非热X射线发射源于湍流磁场中超相对论粒子的同步辐射。我们研究了随机磁场对同步加速器发射图像和光谱的影响。模拟随机磁场以构造具有超相对论性电子稳定分布的源的同步加速器发射图。随机磁场样本中通常会出现非稳定的局部结构(点,块和细丝),其中磁场达到异常高的值。在分布的截止状态中,这些磁场浓度控制着来自最高能量电子的同步加速器发射(沿视线积分),从而导致了演化,断续,结块的外观。模拟的结构类似于在一些年轻的超新星残骸的X射线图像中观察到的结构。 X射线团块的寿命可能足够短,即使在颗粒分布稳定的情况下也能与观察到的一致。与来自相同大小的均匀场的发射相比,在湍流场中,来自截止态的电子谱中的同步加速器辐射的效率大大提高。

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