论文标题

快速观察FRB 20201124a:iii。偏振

FAST observations of an extremely active episode of FRB 20201124A: III. Polarimetry

论文作者

Jiang, Jin-Chen, Wang, Wei-Yang, Xu, Heng, Xu, Jiang-Wei, Zhang, Chun-Feng, Wang, Bo-Jun, Zhou, De-Jiang, Zhang, Yong-Kun, Niu, Jia-Rui, Lee, Ke-Jia, Zhang, Bing, Han, Jin-Lin, Li, Di, Zhu, Wei-Wei, Dai, Zi-Gao, Feng, Yi, Jing, Wei-Cong, Li, Dong-Zi, Luo, Rui, Miao, Chen-Chen, Niu, Chen-Hui, Tsai, Chao-Wei, Wang, Fa-Yin, Wang, Pei, Xu, Ren-Xin, Yang, Yuan-Pei, Yang, Zong-Lin, Yao, Ju-Mei, Yuan, Mao

论文摘要

作为多个部分系列中的第三篇论文,我们报告了从重复的快速无线电爆发(FRB)源FRB 20201124a中检测到的无线电突发的统计特性,其中五百米的光圈球形射电望远镜(快速)在2021年9月25日至25日(UT)之间非常活跃。我们专注于536个明亮爆发的极化属性,并使用$ \ mathrm {s/n}> 50 $。我们发现,Faraday旋转措施(RMS)单调从$ -579 \ {\ rm rad \ m^{ - 2}} $降至$ -605 \ {\ rm rad \ rm rad \ m^{ - 2}}} $。 RM值与值($ -300 $至$ -900 \ {\ rm rad \ m^{ - 2}} $)的值兼容(Xu等,2022)。但是,当前观察窗口中的RM演变速率至少比一个($ \ sim 500 \ {\ rm rad \ rm rad \ m^{ - 2} \,Day^{ - 1}} $)在快速rm-variation阶段报道的day^{ - 1}} $)在后来的RM NO-NO-EVONE阶段,Day^{ - 1}} $。 FRB 20201124a的爆发高度极化,总偏振度(圆形和线性)大于90%,超过90%以上\%。线性极化位置角(PA)的分布,线性极化度($ l/i $)和圆极化度($ v/i $)的分布可以用单峰分布功能来表征。在观察窗口中,随着时间的流逝,分布变得更宽,即散射较大,但是分布功能的质心几乎保持恒定。对于单个爆发,在所有爆发中的33%中观察到显着的PA变化(置信度水平为5- $σ$)。单个脉冲的极化似乎遵循庞加莱球体上的某些复杂轨迹,这可能会揭示沿FRB传播路径的源或血浆性质的辐射机理。

As the third paper in the multiple-part series, we report the statistical properties of radio bursts detected from the repeating fast radio burst (FRB) source FRB 20201124A with the Five-hundred-meter Aperture Spherical radio telescope (FAST) during an extremely active episode between the 25th and the 28th of September 2021 (UT). We focus on the polarisation properties of 536 bright bursts with $\mathrm{S/N}>50$. We found that the Faraday rotation measures (RMs) monotonically dropped from $-579 \ {\rm rad \ m^{-2}}$ to $-605 \ {\rm rad \ m^{-2}}$ in the 4-day window. The RM values were compatible with the values ($-300$ to $-900\ {\rm rad \ m^{-2}}$ ) reported 4 month ago (Xu et al. 2022). However, the RM evolution rate in the current observation window was at least an order of magnitude smaller than the one ($\sim 500\ {\rm rad \ m^{-2}\, day^{-1}}$) previously reported during the rapid RM-variation phase, but is still higher than the one ($\le 1\ {\rm rad \ m^{-2} day^{-1}}$ ) during the later RM no-evolution phase. The bursts of FRB 20201124A were highly polarised with the total degree of polarisation (circular plus linear) greater than 90% for more than 90\% of all bursts. The distribution of linear polarisation position angles (PAs), degree of linear polarisation ($L/I$), and degree of circular polarisation ($V/I$) can be characterised with unimodal distribution functions. During the observation window, the distributions became wider with time, i.e. with larger scatter, but the centroids of the distribution functions remained nearly constant. For individual bursts, significant PA variations (confidence level 5-$σ$) were observed in 33% of all bursts. The polarisation of single pulses seems to follow certain complex trajectories on the Poincaré sphere, which may shed light on the radiation mechanism at the source or the plasma properties along the path of FRB propagation.

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