论文标题

帕克斯“默里阳”在大麦芽云中寻找脉冲星和瞬变

A Parkes "Murriyang" Search for Pulsars and Transients in the Large Magellanic Cloud

论文作者

Hisano, Shinnosuke, Crawford, Fronefield, Bonidie, Victoria, Alam, Md F., Takahashi, Keitaro, Lorimer, Duncan R., Ridley, Josh P., McLaughlin, Maura M., Perera, Benetge B. P.

论文摘要

我们报告了P​​arkes Multibeam对脉冲星和大麦芽云(LMC)中分散无线电爆发的最新结果。我们在试验分散措施(DMS)范围内进行了周期性和单脉冲搜索,而不是先前搜索。我们检测到229个具有信噪比的单脉冲($ \ rm {s/n})> 7 $,这些脉冲由深度学习网络分类为真实($> 90 $%$%的可能性),其中9个来自已知的巨型脉冲脉冲PULSARTICT PULSAR-PULSAR-PULSAR PSR B0540 $ -69。使用DMS检测到两个可能重复的来源,表明它们位于LMC内,但需要确认。在220个未知脉冲中,只有3个大于8,这些检测到的脉冲的DM分布遵循指数下降,DM增加,并且在LMC预期的DM值中没有显示任何过量的信号。这些特征表明,尽管它们在视觉上引人注目,但检测到的脉冲不太可能是真实的。我们还报告了在我们的周期性搜索中发现新的PULSAR(PSR J0556 $ 67)的发现。该脉冲星的旋转周期为791毫秒,DM为71 cm $^{ - 3} $ PC,估计1400 MHz磁通密度为$ \ sim 0.12 $ MJY,并且没有显示二进制运动的证据。未来的观察结果可能能够确认我们的单一脉搏和周期性搜索中的任何弱但有前途的候选人(包括我们的两个可能的中继器)是否是真实的。

We report on the latest results of a Parkes multibeam survey for pulsars and dispersed radio bursts in the Large Magellanic Cloud (LMC). We conducted both periodicity and single-pulse searches at a much larger range of trial dispersion measures (DMs) than previously searched. We detected 229 single pulses with signal-to-noise ratio ($\rm{S/N}) > 7$ that were classified by the deep learning network FETCH as being real (with $> 90$% likelihood), of which 9 were from the known giant-pulse-emitting pulsar PSR B0540$-$69. Two possibly repeating sources were detected with DMs suggesting that they lie within the LMC, but these require confirmation. Only 3 of the 220 unknown pulses had S/N greater than 8, and the DM distribution for these detected pulses follows an exponential falloff with increasing DM and does not show any excess of signals at DM values expected for the LMC. These features suggest that the detected pulses are not likely to be real, although they are visually compelling. We also report the discovery of a new pulsar (PSR J0556$-$67) in our periodicity search. This pulsar has a spin period of 791 ms, a DM of 71 cm$^{-3}$ pc, an estimated 1400 MHz flux density of $\sim 0.12$ mJy, and shows no evidence of binary motion. Future observations may be able to confirm whether any of the weak but promising candidates in our single pulse and periodicity searches, including our two possible repeaters, are real or not.

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