论文标题

在潮汐破坏事件中碰撞恒星流冲击的光学极化

Optical polarization from colliding stellar stream shocks in a tidal disruption event

论文作者

Liodakis, I., Koljonen, K. I. I., Blinov, D., Lindfors, E., Alexander, K. D., Hovatta, T., Berton, M., Hajela, A., Jormanainen, J., Kouroumpatzakis, K., Mandarakas, N., Nilsson, K.

论文摘要

当超级质量的黑洞撕开传球之星时,就会发生潮汐破坏事件(TDE)。恒星材料的一部分落入黑洞,形成了一个积聚磁盘,在某些情况下会引发相对论的喷气机。我们在2020 mot上进行了TDE的光学偏振法观测值。我们发现峰值线性极化度为$ 25 \ pm4 $%,与高度极化的同步子辐射一致,这是相对论喷气机通常观察到的。但是,我们的无线电观察结果在光峰后长达8个月进行,无法检测到相对论射流预期的相应无线电发射。我们建议,随着恒星材料的流与自身的碰撞,线性两极化的光学发射是由积聚盘形成过程中发生的冲击引起的。

A tidal disruption event (TDE) occurs when a supermassive black hole rips apart a passing star. Part of the stellar material falls toward the black hole, forming an accretion disk that in some cases launches a relativistic jet. We performed optical polarimetry observations of a TDE, AT 2020mot. We find a peak linear polarization degree of $25\pm4$%, consistent with highly polarized synchrotron radiation, as is typically observed from relativistic jets. However, our radio observations, taken up to 8 months after the optical peak, do not detect the corresponding radio emission expected from a relativistic jet. We suggest that the linearly polarized optical emission instead arises from shocks that occur during accretion disk formation, as the stream of stellar material collides with itself.

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