论文标题

使用SKA-LOW前体站对22个无线电脉冲星进行光谱分析

Spectral analysis of 22 radio pulsars using SKA-Low precursor stations

论文作者

Lee, C. P., Bhat, N. D. R., Sokolowski, M., Swainston, N. A., Ung, D., Magro, A., Chiello, R.

论文摘要

我们介绍了第二代前体站进行的首次观察性研究,该研究是针对平方公里阵列(SKA-LOW)的低频组分的:孔径阵列验证系统2(AAVS2)和工程开发阵列2(EDA2)。使用SKA-LOW站点,我们观察到了70-350 MHz之间的100个Southern Sky Pulsars,包括在选定的明亮脉冲星样品的多个频率下以多个频率进行的随访。这些观察结果已经得出了22个脉冲星的检测,其中包括有史以来为6个脉冲星发布的最低频率检测,尽管初始系统的敏感性适中,其中记录带宽限于〜1 MHz。通过比较使用SKA-LOW站点获得的同时磁通密度测量并进行严格的电磁模拟,我们验证了Sokolowski等人中介绍的SKA-LOW灵敏度模拟代码的准确性。 (2022)。此外,我们使用Jankowski等人开发的方法执行模型与检测到的脉冲星的无线电光谱。 (2018年),其中包括9个不适合原始作品的脉冲星。我们将光谱分类为5个形态学类别,发现除一个脉冲星以外的所有频谱都表现出与简单的幂律行为的偏差。这些发现表明,具有确定光谱的脉冲星比平均水平更可能显示光谱变平或转换。我们的工作表明,如何将SKA-LOW站用于科学有用的测量和分析PULSAR无线电光谱,这是通知使用SKA-LOW计划的Pulsar调查和科学的重要输入。

We present the first observational study of pulsars performed with the second-generation precursor stations to the low-frequency component of the Square Kilometre Array (SKA-Low): the Aperture Array Verification System 2 (AAVS2) and the Engineering Development Array 2 (EDA2). Using the SKA-Low stations, we have observed 100 southern-sky pulsars between 70-350 MHz, including follow-up observations at multiple frequencies for a selected sample of bright pulsars. These observations have yielded detections of 22 pulsars, including the lowest-frequency detections ever published for 6 pulsars, despite the modest sensitivity of initial system where the recording bandwidth is limited to ~1 MHz. By comparing simultaneous flux density measurements obtained with the SKA-Low stations and performing rigorous electromagnetic simulations, we verify the accuracy of the SKA-Low sensitivity simulation code presented in Sokolowski et al. (2022). Furthermore, we perform model fits to the radio spectra of the detected pulsars using the method developed by Jankowski et al. (2018), including 9 pulsars which were not fitted in the original work. We robustly classify the spectra into 5 morphological classes and find that all but one pulsar exhibit deviations from simple power-law behaviour. These findings suggest that pulsars with well-determined spectra are more likely to show spectral flattening or turn-over than average. Our work demonstrates how SKA-Low stations can be meaningfully used for scientifically useful measurements and analysis of pulsar radio spectra, which are important inputs for informing pulsar surveys and science planned with the SKA-Low.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源