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X-Ray Brightening and UV Fading of Tidal Disruption Event ASASSN-15oi

机译:X射线增白和紫外线衰落的潮气中断事件Asassn-15oi

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We present late-time observations by Swift and XMM-Newton of the tidal disruption event (TDE) ASASSN-15oi that reveal that the source brightened in the X-rays by a factor of ~10 one year after its discovery, while it faded in the UV/optical by a factor of ~100. The XMM-Newton observations measure a soft X-ray blackbody component with kT_(bb) ~ 45 eV, corresponding to radiation from several gravitational radii of a central ~10~6 M_⊙ black hole. The last Swift epoch taken almost 600 days after discovery shows that the X-ray source has faded back to its levels during the UV/optical peak. The timescale of the X-ray brightening suggests that the X-ray emission could be coming from delayed accretion through a newly forming debris disk and that the prompt UV/optical emission is from the prior circularization of the disk through stream-stream collisions. The lack of spectral evolution during the X-ray brightening disfavors ionization breakout of a TDE “veiled" by obscuring material. This is the first time a TDE has been shown to have a delayed peak in soft X-rays relative to the UV/optical peak, which may be the first clear signature of the real-time assembly of a nascent accretion disk, and provides strong evidence for the origin of the UV/optical emission from circularization, as opposed to reprocessed emission of accretion radiation.
机译:我们通过SWIFT和XMM-Newton的潮汐中断事件(TDE)的XMM-Newton展示了XMM-Newton的延迟观测,揭示了X射线在X射线中亮起的来源,在其发现后一年〜10倍,同时褪色紫外/光学因子〜100倍。 XMM-Newton观察测量具有Kt_(BB)〜45eV的软X射线黑体组分,对应于来自中央〜10〜6m_⊙黑洞的多个重力半径的辐射。发现在发现后近600天的最后一次Swift时期表明X射线源在UV /光学峰期间逐渐消失。 X射线增白的时间尺度表明,X射线发射可以通过新形成的碎屑盘来推动延迟增,并且提示UV /光发射通过流流冲突来从盘的先前循环。通过遮蔽材料X射线增白抗性缺乏X射线亮型脱离电离分布的光谱演化。这是第一次显示TDE相对于UV /光学在软X射线中具有延迟峰值峰值,这可能是新生积压盘的实时组装的第一清晰签名,并为来自循环化的UV /光发射的起源提供了强有力的证据,而不是再加工辐射的排放。

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