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Simultaneous single-pulse observations of radio pulsars V. On the broadband nature of the pulse nulling phenomenon in PSR B1133+16

机译:无线电脉冲星V的同时单脉冲观测。论PSR B1133 + 16中脉冲归零现象的宽带性质

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摘要

Aims. In this paper we revisit the well-known phenomenon of pulse nulling using high-quality single-pulse data of PSR B1133+16 from simultaneous multifrequency observations. Methods. Observations were made at 325, 610, 1400 and 4850 MHz as part of a joint program between the European Pulsar Network (EPN) and the Giant Metrewave Radio Telescope (GMRT). The pulse energy time series are analysed to derive improved statistics of nulling pulses as well as to investigate the frequency dependence of the phenomenon. Results. The pulsar is observed to be in null state for approximately 15% of the time; however, we find that nulling does not always occur simultaneously at all four frequencies of observation. We characterise the statistics of such "selective nulling" as a function of frequency, separation in frequency, and combination of frequencies. The most remarkable case of such selective nulling seen in our data is a significantly large number of nulls (≈6%) at lower frequencies, that are marked by the presence of a fairly narrow emission feature at the highest frequency of 4850 MHz. We refer to these as "low frequency (LF) nulls". We characterise the properties of high frequency (HF) emission at the occurrence of LF nulls, and compare and contrast them with that of "normal emission" at 4850 MHz. Our analysis shows that this high frequency emission tends to occur preferentially over a narrow range in longitude and with pulse widths typically of the order of a few milliseconds. We discuss the implications of our results for the pulsar emission mechanism in general and for the broadbandness of nulling phenomenon in particular. Our results signify the presence of an additional process of emission which does not turn off when the pulsar nulls at low frequencies, and becomes more prominent at higher frequencies. Our analysis also hints at a possible outer gap origin for this new population of pulses, and thus a likely connection to some high-energy emission processes that occur in the outer parts of the pulsar magnetosphere. © ESO 2007.
机译:目的在本文中,我们使用来自多频同步观测的PSR B1133 + 16的高质量单脉冲数据,重新审视了众所周知的脉冲清零现象。方法。作为欧洲脉冲星网络(EPN)与巨型海浪射电望远镜(GMRT)之间的联合计划的一部分,在325、610、1400和4850 MHz处进行了观测。分析了脉冲能量时间序列,以得出调零脉冲的改进统计信息,并研究该现象的频率依赖性。结果。脉冲星大约在15%的时间内处于无效状态;但是,我们发现在所有四个观察频率处,总不会同时出现零位现象。我们将这种“选择性归零”的统计量表征为频率,频率分离和频率组合的函数。在我们的数据中看到的这种最明显的零陷最显着情况是,在较低频率下存在大量零陷(约6%),其特征是在4850 MHz最高频率处存在相当窄的发射特征。我们将这些称为“低频(LF)空值”。我们表征了低频零陷出现时的高频(HF)发射特性,并将它们与4850 MHz处的“正常发射”特性进行比较和对比。我们的分析表明,这种高频发射倾向于优先在较窄的经度范围内发生,并且脉冲宽度通常为几毫秒量级。我们讨论了我们的结果对于脉冲星发射机制的总体意义,尤其是对零陷现象的宽带性的影响。我们的结果表明存在一个额外的发射过程,当脉冲星在低频处无效时,该过程不会关闭,而在高频处更为突出。我们的分析还暗示了这种新的脉冲群可能存在外部间隙,因此可能与脉冲星磁层外部发生的一些高能发射过程有关。 ©ESO 2007。

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