论文标题

印度脉冲星的计时阵列:第一个数据发布

The Indian Pulsar Timing Array: First data release

论文作者

Tarafdar, Pratik, K., Nobleson, Rana, Prerna, Singha, Jaikhomba, Krishnakumar, M. A., Joshi, Bhal Chandra, Paladi, Avinash Kumar, Kolhe, Neel, Batra, Neelam Dhanda, Agarwal, Nikita, Bathula, Adarsh, Dandapat, Subhajit, Desai, Shantanu, Dey, Lankeswar, Hisano, Shinnosuke, Ingale, Prathamesh, Kato, Ryo, Kharbanda, Divyansh, Kikunaga, Tomonosuke, Marmat, Piyush, Pandian, B. Arul, Prabu, T., Srivastava, Aman, Surnis, Mayuresh, Susarla, Sai Chaitanya, Susobhanan, Abhimanyu, Takahashi, Keitaro, Arumugam, P., Bagchi, Manjari, Banik, Sarmistha, De, Kishalay, Girgaonkar, Raghav, Gopakumar, A., Gupta, Yashwant, Maan, Yogesh, Manoharan, P. K., Naidu, Arun, Pathak, Dhruv

论文摘要

我们使用升级的巨型Metrewave射电望远镜(UGMRT)同时观察到了在300-500 MHz和1260-1460 MHz频带中同时观察到的14毫秒脉冲星的脉搏到达时间和高精度分散度量度估计。数据涵盖了3。5年(2018-2021)的基准,这是印度Pulsar Timing Array Clocalory提供的首次官方数据发布。该数据发布为调查低无线电频率下的星际介质效应及其对PULSAR时正时阵列实验的时序精度的影响提供了独特的机会。除了使用窄带和宽带正时技术获得的分散度测量时间序列和脉搏到达时间外,我们还提供了选定脉冲星的分散度量测量结构函数分析。我们正在进行有关色散度量频率依赖性的持续调查。基于对五毫秒脉冲星的初步分析,我们找不到分散措施中色彩的任何结论性证据。在这项工作中,首次提供了来自常规同时两种频率观察的数据。这一独特的特征使我们达到了迄今为​​止样本子集获得的最高精度色散度量估计值。频段3和频段5中的同时多波段UGMRT观测值对于高精度分散度量估计至关重要,并且对于在不久的将来,来自各种PULSAR时序阵列联盟的数据组合,扩大总体频率覆盖率的前景。预计这项工作中介绍的数据的一部分将被纳入国际PULSAR计时阵列的即将到来的第三个数据发布中。

We present the pulse arrival times and high-precision dispersion measure estimates for 14 millisecond pulsars observed simultaneously in the 300-500 MHz and 1260-1460 MHz frequency bands using the upgraded Giant Metrewave Radio Telescope (uGMRT). The data spans over a baseline of 3.5 years (2018-2021), and is the first official data release made available by the Indian Pulsar Timing Array collaboration. This data release presents a unique opportunity for investigating the interstellar medium effects at low radio frequencies and their impact on the timing precision of pulsar timing array experiments. In addition to the dispersion measure time series and pulse arrival times obtained using both narrowband and wideband timing techniques, we also present the dispersion measure structure function analysis for selected pulsars. Our ongoing investigations regarding the frequency dependence of dispersion measures have been discussed. Based on the preliminary analysis for five millisecond pulsars, we do not find any conclusive evidence of chromaticity in dispersion measures. Data from regular simultaneous two-frequency observations are presented for the first time in this work. This distinctive feature leads us to the highest precision dispersion measure estimates obtained so far for a subset of our sample. Simultaneous multi-band uGMRT observations in Band 3 and Band 5 are crucial for high-precision dispersion measure estimation and for the prospect of expanding the overall frequency coverage upon the combination of data from the various Pulsar Timing Array consortia in the near future. Parts of the data presented in this work are expected to be incorporated into the upcoming third data release of the International Pulsar Timing Array.

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