论文标题
EPTA脉冲星的长期闪烁研究。 I.观察和基本结果
Long-term scintillation studies of EPTA pulsars. I. Observations and basic results
论文作者
论文摘要
脉冲星的星际闪烁分析使我们能够探测离子化星际培养基的小规模分布和不均匀性。 我们的首要任务是介绍脉冲星的闪烁参数的数据集以及采用长期闪烁观测的闪烁参数,该观测值于2011年1月至2020年8月由21-CM和11-CM频段的欧洲Pulsar Time阵列射程望远镜进行。此外,我们旨在使用此长期闪烁数据集确定未来可能的研究线。 我们介绍了$ν_ {\ rm d} $的长期时间序列和$τ_ {\ rm d} $的$ 13脉冲。理智检查和比较表明,我们作品和以前发表的作品的闪烁参数大多是一致的。对于两个脉冲星,PSRS〜J1857+0943和J1939+2134,我们能够在两个乐队中获得$ν_{\ rm d} $的测量值,这使我们能够以平均和2.82 $ \ pm pm $ 1.95 $ 1.95和3.18 $ 1.95和3.18 $ 1.95和3.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $ 0.18 $0。我们发现了一些有趣的特征,这些功能将在本系列的随后论文中进行更详细的研究:(i)在PSR〜J1939+2134的时间序列中,闪烁带宽急剧增加或减少与分散度量的急剧变化相关的; (ii)PSR〜J0613 $ - $ 0200和PSR〜J0636+5126在$τ_{\ rm d} $的时间序列中显示出强烈的年度变化; (iii)PSR〜J1939+2134显示了WSRT数据中闪烁时间尺度和分散之间的抗相关性较弱。
Interstellar scintillation analysis of pulsars allows us to probe the small-scale distribution and inhomogeneities of the ionized interstellar medium. Our priority is to present the data set and the basic measurements of scintillation parameters of pulsars employing long-term scintillation observations carried out from 2011 January to 2020 August by the European Pulsar Timing Array radio telescopes in the 21-cm and 11-cm bands. Additionally, we aim to identify future possible lines of study using this long-term scintillation dataset. We present the long-term time series of $ν_{\rm d}$ and $τ_{\rm d}$ for 13 pulsars. Sanity-checks and comparisons indicate that the scintillation parameters of our work and previously published works are mostly consistent. For two pulsars, PSRs~J1857+0943 and J1939+2134, we were able to obtain measurements of the $ν_{\rm d}$ at both bands, which allows us to derive the time series of frequency scaling indices with a mean and a standard deviation of 2.82$\pm$1.95 and 3.18$\pm$0.60, respectively. We found some interesting features which will be studied in more detail in subsequent papers in this series: (i) in the time series of PSR~J1939+2134, where the scintillation bandwidth sharply increases or decreases associated with a sharp change of dispersion measure; (ii) PSR~J0613$-$0200 and PSR~J0636+5126 show a strong annual variation in the time series of the $τ_{\rm d}$; (iii) PSR~J1939+2134 shows a weak anti-correlation between scintillation timescale and dispersion in WSRT data.