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首页> 外文期刊>Astronomy and astrophysics >G181.1+9.5, a new high-latitude low-surface brightness supernova remnant
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G181.1+9.5, a new high-latitude low-surface brightness supernova remnant

机译:G181.1 + 9.5,一个新的高纬度低表面亮度超新星残余物

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Context. More than 90% of the known Milky Way supernova remnants (SNRs) are within 5° of the Galactic plane. The discovery of the new high-latitude SNR G181.1+9.5 will give us the opportunity to learn more about the environment and magnetic field at the interface between disk and halo of our Galaxy. Aims. We present the discovery of SNR G181.1+9.5, a new high-latitude SNR, serendipitously discovered in an ongoing survey of the Galactic anti-centre High-Velocity Cloud complex, observed with the DRAO Synthesis Telescope in the 21 cm radio continuum and H? i spectral line. Methods. We use radio continuum observations (including the linearly polarized component) at 1420 MHz (observed with the DRAO?ST) and 4850 MHz (observed with the Effelsberg 100-m radio telescope) to map G181.1+9.5 and determine its nature as a SNR. High-resolution 21 cm H? i line observations and H? i emission and absorption spectra reveal the physical characteristics of its local interstellar environment. Finally, we estimate the basic physical parameters of G181.1+9.5 using models for highly-evolved SNRs. Results. G181.1+9.5 has a circular shell-like morphology with a radius of about 16 pc at a distance of 1.5 kpc some 250 pc above the mid-plane. The radio observations reveal highly linearly polarized emission with a non-thermal spectrum. Archival ROSAT X-ray data reveal high-energy emission from the interior of G181.1+9.5 indicative of the presence of shock-heated ejecta. The SNR is in the advanced radiative phase of SNR evolution, expanding into the HVC inter-cloud medium with a density of n _(HI) ≈ 1 cm ~(-3) . Basic physical attributes of G181.1+9.5 calculated with radiative SNR models show an upper-limit age of 16?000 yr, a swept-up mass of more than 300 M _(⊙) , and an ambient density in agreement with that estimated from H? i observations. Conclusions. G181.1+9.5 shows all characteristics of a typical mature shell-type SNR, but its observed faintness is unusual and requires further study.
机译:语境。超过90%的已知银河系超新星残余(SNR)在半乳扁平面的5°内。新的高纬度SNR G181.1 + 9.5的发现将使我们有机会在银河系的磁盘和光环之间的界面上了解更多有关环境和磁场的更多信息。目标。我们介绍了SNR G181.1 + 9.5的发现,这是一种新的高纬度SNR,在持续的银河反应中心高速云复合体中被定性发现,在21厘米无线电连续体中观察到DRAO合成望远镜和H?我光谱线。方法。我们在1420 MHz(用DRAOΔST观察)和4850MHz(用Effelsberg 100-M封电子望远镜观察)来映射G181.1 + 9.5并确定其性质,并确定其性质SNR。高分辨率21 cm h? i线观察和h?我发射和吸收光谱揭示了其局部间隙环境的物理特征。最后,我们估计使用高度发展的SNR的模型来估计G181.1 + 9.5的基本物理参数。结果。 G181.1 + 9.5具有圆形壳体形态,半径约为16磅,距离为1.5 kpc在中间平面上方的约250千台。无线电观察结果揭示了具有非热谱的高度线性偏振发射。档案rosat X射线数据显示G181.1 + 9.5内部的高能量排放,指示存在冲击加热的喷射物。 SNR处于SNR演化的高级辐射阶段,扩展到HVC间介质中,密度为N _(HI)≈1cm〜(-3)。 G181.1 + 9.5的基本物理属性用辐射SNR模型计算,上限年龄为16?000yr,扫过质量超过300米_(⊙),以及与估计协议的环境密度来自h?我观察。结论。 G181.1 + 9.5显示了典型成熟壳型SNR的所有特征,但其观察到的微弱是不寻常的,需要进一步研究。

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