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Discovery of a Mid-infrared Echo from the TDE Candidate in the Nucleus of ULIRG F01004−2237

机译:在ULIRG F01004-2237核中从TDE候选物中发现中红外回波

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摘要

We present the mid-infrared (MIR) light curves (LCs) of a tidal disruption event candidate in the center of a nearby ultraluminous infrared galaxy F01004−2237 using archival WISE and NEOWISE data from 2010 to 2016. At the peak of the optical flare, F01004−2237 was IR quiescent. About three years later, its MIR fluxes have shown a steady increase, rising by 1.34 and 1.04 mag in 3.4 and 4.6 μm up to the end of 2016. The host-subtracted MIR peak luminosity is 2–3 × 10^(44) erg s^(−1). We interpret the MIR LCs as an infrared echo, i.e., dust reprocessed emission of the optical flare. Fitting the MIR LCs using our dust model, we infer a dust torus of the size of a few parsecs at some inclined angle. The derived dust temperatures range from 590–850 K, and the warm dust mass is ~7 M_⊙. Such a large mass implies that the dust cannot be newly formed. We also derive the UV luminosity of 4–11 × 10^(44) erg s^(−1). The inferred total IR energy is 1–2 × 10^(52) erg, suggesting a large dust covering factor. Finally, our dust model suggests that the long tail of the optical flare could be due to dust scattering.
机译:我们使用2010年至2016年的WISE和NEOWISE档案数据,展示了附近超发光红外星系F01004-2237中心的潮汐干扰事件候选者的中红外(MIR)光曲线(LC)。在光学耀斑的峰值处F01004-2237是IR静态的。大约三年后,其MIR通量稳定增长,到2016年底,分别在3.4和4.6μm处分别增加了1.34和1.04 mag。扣除主体后的MIR峰值发光度为2-3×10 ^(44)erg s ^(-1)。我们将MIR LC解释为红外回波,即光学火炬的粉尘重新处理后的发射。使用我们的尘埃模型拟合MIR LC,我们可以推断出某个倾斜角度下几秒钟大小的尘埃圆环。导出的粉尘温度范围为590–850 K,温暖的粉尘质量为〜7M_⊙。如此大的质量意味着不能重新形成灰尘。我们还推导了4–11×10 ^(44)erg s ^(-1)的紫外线光度。推断的总IR能量为1-2×10 ^(52)erg,这表明较大的灰尘覆盖因子。最后,我们的尘埃模型表明光学耀斑的长尾巴可能是由于尘埃散射造成的。

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