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Probing Cosmic-Ray Transport with Radio Synchrotron Harps in the Galactic Center

机译:银河系中无线电同步rotron Harps探测宇宙射线运输

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Recent observations with the MeerKAT radio telescope reveal a unique population of faint nonthermal filaments pervading the central molecular zone, a region rich in molecular gas near the Galactic center. Some of those filaments are organized into groups of almost parallel filaments, seemingly sorted by their length, so that their morphology resembles a harp with radio-emitting "strings." We argue that the synchrotron-emitting GeV electrons of these radio harps have been consecutively injected by the same source (a massive star or pulsar) into spatially intermittent magnetic fiber bundles within a magnetic flux tube or via time-dependent injection events. After escaping from this source, the propagation of cosmic-ray (CR) electrons inside a flux tube is governed by the theory of CR transport. We propose to use observations of radio harp filaments to gain insight into the specifics of CR propagation along magnetic fields of which there are two principle modes: CRs could either stream with selfexcited magnetohydrodynamic waves or diffuse along the magnetic field. To disentangle these possibilities, we conduct hydrodynamical simulations of either purely diffusing or streaming CR electrons and compare the resulting brightness distributions to the observed synchrotron profiles of the radio harps. We find compelling evidence that CR streaming is the dominant propagation mode for GeV CRs in one of the radio harps. Observations at higher angular resolution should detect more radio harps and may help to disentangle projection effects of the possibly three-dimensional flux-tube structure of the other radio harps.
机译:最近与Meerkat Radio Telescope的观察结果揭示了一种独特的微弱的非热长丝,弥合中央分子区,富含银河系中的分子气体的区域。其中一些长丝被组织成几乎平行的长丝,似乎以它们的长度分类,使其形态类似于带有无线电“字符串”的竖琴。我们认为这些无线电竖琴的同步发射GEV电子通过将相同的源极(大型星形或脉冲条)连续地注入磁通管内的空间间歇性磁性纤维束或通过时间依赖的注射事件。在从该来源逃逸之后,宇宙射线(CR)电子在磁通管内的传播受Cr运输理论的管辖。我们建议使用无线电HARP长丝的观测,以深入了解沿着有两个原理模式的磁场的CR传播的细节:CRS可以用可自驾磁流动波或沿磁场漫射。为了解开这些可能性,我们对纯粹漫射或流媒体CR电子进行流体动力学模拟,并将所产生的亮度分布与无线电竖琴的观察到的同步rotron轮廓进行比较。我们发现引人注目的证据表明CR流媒体是其中一个无线电竖琴中的GEV CRS的主导传播模式。处于较高角度分辨率的观察应检测更多的无线电竖琴,并且可以有助于解开其他无线电竖琴竖琴的三维磁通管结构的投影效果。

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