论文标题
研究Cygnus X-3的迷你和巨型无线电耀斑发作
Investigating the mini and giant radio flare episodes of Cygnus X-3
论文作者
论文摘要
微Quasar Cygnus X-3在2017年4月进行了巨大的广播耀斑,最大通量为$ \ sim 16.5 $ jy在8.5 GHz。我们从2017年4月4日至11月11日与Medsähovi射程望远镜平行于37 GHz的Metsähovi射程望远镜平行,在Medicina进行的长期监控活动中,我们的结果结果是从2017年4月4日至11日。我们观察到频谱从$α= 0.2 $ $α= 0.2 $ 0.5($s_ν\ propto c c c c c c c n yneve n of the thef)的范围均为$ s n Inspect n Inspect clive。在接下来的几天短暂增强发射发作中,光谱斜率的变化,而无线电通量密度的一般趋势表明巨型耀斑的衰变。我们进一步研究了与2017年巨型耀斑相关的CYG X-3排放的无线电轨道调节,并在1983,1985,1985,1994,1994,1995,2002和2016中观察到了六个迷你灯。另一方面,在$ 15-22 $ ghz峰值$ ϕ \ sim 0 $上观察到的迷你灯的光曲线,除了2016灯曲线的偏移为0.5 w.r.t.其他。我们将明显的相移归因于沿弯曲射流的发射区域的可变位置。这可能是通过耀斑发作的不同积聚状态来解释的(2016年迷你爆发发生在Hypersoft X射线状态)。
The microquasar Cygnus X-3 underwent a giant radio flare in April 2017, reaching a maximum flux of $\sim 16.5$ Jy at 8.5 GHz. We present results from a long monitoring campaign carried out with Medicina at 8.5, 18.6 and 24.1 GHz, in parallel to the Metsähovi radio telescope at 37 GHz, from 4 to 11 April 2017. We observe a spectral steepening from $α= 0.2$ to 0.5 (with $S_ν \propto ν^{-α}$) within 6 h around the epoch of the peak maximum of the flare, and rapid changes in the spectral slope in the following days during brief enhanced emission episodes while the general trend of the radio flux density indicated the decay of the giant flare. We further study the radio orbital modulation of Cyg X-3 emission associated with the 2017 giant flare and with six mini-flares observed in 1983, 1985, 1994, 1995, 2002 and 2016. The enhanced emission episodes observed during the decline of the giant flare at 8.5 GHz coincide with the orbital phase $ϕ\sim 0.5$ (orbital inferior conjunction). On the other hand the light curves of the mini-flares observed at $15-22$ GHz peak at $ϕ\sim 0$, except for the 2016 light curve which is shifted of 0.5 w.r.t. the other ones. We attribute the apparent phase shift to the variable location of the emitting region along the bent jet. This might be explained by the different accretion states of the flaring episodes (the 2016 mini-flare occurred in the hypersoft X-ray state).