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LONG FADING MID-INFRARED EMISSION IN TRANSIENT CORONAL LINE EMITTERS: DUST ECHO OF A TIDAL DISRUPTION FLARE

机译:瞬变冠状线发射器中衰落的中红外辐射的长时程:潮汐干扰耀斑的尘埃回声

摘要

The sporadic accretion following the tidal disruption of a star by a super-massive black hole (TDE) leads to a bright. UV and soft X-ray flare in the galactic nucleus. The gas and dust surrounding the black hole responses to such a flare with an echo in emission lines and infrared emission. In this paper, we report the detection of long fading mid-IR emission lasting up to 14 years after the flare in four TDE candidates with transient coronal lines using the WISE public data release. We estimate that the reprocessed mid-IR luminosities are in the range between 4 x 10(42) and 2 x 10(43) erg s(-1) and dust temperature in the range of 570-800 K when WISE first detected these sources three to five years after the flare. Both luminosity and dust temperature decrease with time. We interpret the mid-IR emission as the infrared echo of the tidal disruption flare. We estimate the UV luminosity at the peak flare to be 1 to 30 times 10(44) erg s(-1) and that for. warm dust masses to be. in the range of 0.05-1.3 M-circle dot within a few parsecs. Our results suggest that the. mid-infrared echo is a general signature of TDE in the gas-rich environment.
机译:超大质量黑洞(TDE)对恒星进行潮汐破坏后的零星堆积会导致明亮。银河核中的紫外线和软X射线耀斑。黑洞周围的气体和灰尘对这种耀斑的响应是发射线中产生回声和红外发射。在本文中,我们报告了使用WISE公共数据发布对4个具有短暂冠状线的TDE候选者爆发后持续长达14年的中红外长衰落发射的检测。我们估计重新处理的中红外光度在4 x 10(42)和2 x 10(43)erg s(-1)之间,并且尘埃温度在WISE首次检测到这些光源时在570-800 K范围内爆发后三到五年。亮度和粉尘温度均随时间降低。我们将中红外辐射解释为潮汐干扰耀斑的红外回波。我们估计峰值眩光处的UV光度为10(44)erg s(-1)的1至30倍。温暖的尘埃群众应。在几毫秒内的0.05-1.3 M圆点范围内。我们的结果表明。在富含气体的环境中,中红外回波是TDE的一般特征。

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