利用澳大利亚平方公里阵列探路者发现年轻的高散射脉冲星 PSR J1032-5804

Ziteng Wang, David L. Kaplan, R. Sengar, E. Lenc, A. Zic, A. Anumarlapudi, B. M. Gaensler, N. Hurley-Walker, Tara Murphy, Yuanming Wang
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摘要

我们报告说,在澳大利亚平方公里阵列探路者变星和慢瞬变巡天观测中,我们在对高圆极化射电源的搜索中发现了一颗年轻的高散射脉冲星。在利用墨里阳帕克斯射电望远镜进行的后续观测中,我们确定了 PSR J1032-5804,并测量出其周期为 78.7 毫秒,色散测量值为 819 ± 4 pc cm-3,自转测量值为 -2000 ± 1 rad m-2,特征年龄为 34.6 千年。我们发现在 3 GHz 的脉冲散射时间尺度为 ∼22 ms,这意味着在 1 GHz 的时间尺度为 ∼3845 ms,这是目前已知的第三大散射脉冲星,这也解释了为什么在以前的脉冲星巡天中没有发现它。我们讨论了通过分析脉冲星光谱能量分布和多波长图像中的周围扩展发射,识别脉冲星局部环境中可能存在的脉冲星风星云和超新星残余物。我们的结果凸显了从射电连续相图像中识别极度散乱脉冲星的可能性。正在进行的和未来的大规模射电连续面巡天将为我们提供一个前所未有的机会来发现更多的极端脉冲星(如高度散射、高度间歇和高度加速),这将加深我们对脉冲星和星际介质特征的理解。
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Discovery of a Young, Highly Scattered Pulsar PSR J1032-5804 with the Australian Square Kilometre Array Pathfinder
We report the discovery of a young, highly scattered pulsar in a search for highly circularly polarized radio sources as part of the Australian Square Kilometre Array Pathfinder Variables and Slow Transients survey. In follow-up observations with the Parkes radio telescope, Murriyang, we identified PSR J1032−5804 and measured a period of 78.7 ms, a dispersion measure of 819 ± 4 pc cm−3, a rotation measure of −2000 ± 1 rad m−2, and a characteristic age of 34.6 kyr. We found a pulse scattering timescale at 3 GHz of ∼22 ms, implying a timescale at 1 GHz of ∼3845 ms, which is the third most scattered pulsar known and explains its nondetection in previous pulsar surveys. We discuss the identification of a possible pulsar wind nebula and supernova remnant in the pulsar’s local environment by analyzing the pulsar spectral energy distribution and the surrounding extended emission from multiwavelength images. Our result highlights the possibility of identifying extremely scattered pulsars from radio continuum images. Ongoing and future large-scale radio continuum surveys will offer us an unprecedented opportunity to find more extreme pulsars (e.g., highly scattered, highly intermittent, and highly accelerated), which will enhance our understanding of the characteristics of pulsars and the interstellar medium.
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