Temporal and spatial variation of synchrotron X-ray stripes in Tycho’s supernova remnant

Masamune Matsuda, Takaaki Tanaka, H. Uchida, Y. Amano, T. Tsuru
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引用次数: 6

Abstract

The synchrotron X-ray "stripes" discovered in Tycho's supernova remnant (SNR) have been attracting attention since they may be evidence for proton acceleration up to PeV. We analyzed Chandra data taken in 2003, 2007, 2009, and 2015 for imaging and spectroscopy of the stripes in the southwestern region of the SNR. Comparing images obtained at different epochs, we find that time variability of synchrotron X-rays is not limited to two structures previously reported but is more common in the region. Spectral analysis of nine bright stripes reveals not only their time variabilities but also a strong anti-correlation between the surface brightness and photon indices. The spectra of the nine stripes have photon indices of \Gamma = 2.1--2.6 and are significantly harder than those of the outer rim of the SNR in the same region with \Gamma = 2.7--2.9. Based on these findings, we indicate that the magnetic field is substantially amplified, and suggest that particle acceleration through a stochastic process may be at work in the stripes.
第谷超新星遗迹同步加速器x射线条纹的时空变化
在第谷超新星遗迹(SNR)中发现的同步加速器x射线“条纹”一直引起人们的关注,因为它们可能是质子加速到PeV的证据。我们分析了钱德拉在2003年、2007年、2009年和2015年拍摄的数据,对信噪比西南地区的条纹进行了成像和光谱分析。比较不同时期获得的图像,我们发现同步加速器x射线的时间变异性并不局限于以前报道的两种结构,而是在该地区更为常见。对9条亮条纹的光谱分析不仅揭示了它们的时变特征,而且表明表面亮度与光子指数之间存在很强的反相关关系。9条条纹的光谱的光子指数为\Gamma = 2.1—2.6,并且在\Gamma = 2.7—2.9的同一区域内,比信噪比外缘的光谱硬得多。基于这些发现,我们指出磁场被大大放大,并提出粒子通过随机过程加速可能在条纹中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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