论文标题

与Meerkat偶然发现附近的M矮人的无线电耀斑行为

Serendipitous discovery of radio flaring behaviour from a nearby M dwarf with MeerKAT

论文作者

Andersson, Alex, Fender, Rob, Lintott, Chris, Williams, David, Driessen, Laura, Woudt, Patrick, van der Horst, Alexander, Buckley, David, Motta, Sara, Rhodes, Lauren, Eisner, Nora, Osten, Rachel, Vreeswijk, Paul, Bloemen, Steven, Groot, Paul

论文摘要

我们报告了MKT J174641.0 $ - $ 321404的检测,这是一个新的无线电瞬态,在以黑洞X射线X型二进制H1743 $ -322为中心的无靶标搜索范围的宽场Meerkat无线电图像。 MKT J174641.0 $ - $ 321404在1.3 GHz时的变化很大,在2018年底的11个田间观察中被检测到3次,达到590 $ \ pm $ 60 $μ$ $ $ jy的最大通量密度。我们将此无线电瞬态与高度适当的运动相关联,M矮星SCR 〜1746 $ - $ 3214 12 PC距离太阳。该M矮人的多波长观测表明,电磁光谱的耀斑活性与DME恒星预期的发射一致,并且在无线电和X射线方案中都提供了静态亮度的上限。 \ textIt {Tess}光度法显示SCR 〜1746 $ - $ 3214的旋转周期$ 0.2292 \ pm 0.0025 $ DAME,根据其估计的半径,这使恒星成为快速旋转器,可与其他低质量系统相当。专用的光谱随​​访证实了恒星为中期光谱M矮人,具有强烈的H $α$发射指示的清晰磁性活性。 Meerkat偶然发现的偶然性发现,以及多波长的表征,使其成为当前一代无线电干涉仪的功能以及Meerlicht等光学设施同时观察的值的主要证明。我们的结果建立在M Dwarfs的耀斑行为的文献上,尤其是与其行星系统的可居住性有关的文献。

We report on the detection of MKT J174641.0$-$321404, a new radio transient found in untargeted searches of wide-field MeerKAT radio images centred on the black hole X-ray binary H1743$-$322. MKT J174641.0$-$321404 is highly variable at 1.3 GHz and was detected three times during 11 observations of the field in late 2018, reaching a maximum flux density of 590 $\pm$ 60 $μ$Jy. We associate this radio transient with a high proper motion, M dwarf star SCR~1746$-$3214 12 pc away from the Sun. Multiwavelength observations of this M dwarf indicate flaring activity across the electromagnetic spectrum, consistent with emission expected from dMe stars, and providing upper limits on quiescent brightness in both the radio and X-ray regimes. \textit{TESS} photometry reveals a rotational period for SCR~1746$-$3214 of $0.2292 \pm 0.0025$ days, which at its estimated radius makes the star a rapid rotator, comparable to other low mass systems. Dedicated spectroscopic follow up confirms the star as a mid-late spectral M dwarf with clear magnetic activity indicated by strong H$α$ emission. This transient's serendipitous discovery by MeerKAT, along with multiwavelength characterisation, make it a prime demonstration of both the capabilities of the current generation of radio interferometers and the value of simultaneous observations by optical facilities such as MeerLICHT. Our results build upon the literature of of M dwarfs' flaring behaviour, particularly relevant to the habitability of their planetary systems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源