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Multiwavelength Studies of Rotating Radio Transients

机译:旋转无线电瞬变的多波长研究

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We describe our studies of the radio and high-energy properties of Rotating Radio Transients (RRATs). We find that the radio pulse intensity distributions are log-normal, with power-law tails evident in two cases. For the three RRATs with coverage over a wide range of frequency, the mean spectral index is -1.7 +- 0.1, roughly in the range of normal pulsars. We do not observe anomalous magnetar-like spectra for any RRATs. Our 94-ks XMM-Newton observation of the high magnetic field RRAT J1819-1458 reveals a blackbody spectrum (kT approx 130 eV) with an unusual absorption feature at approx1 keV. We find no evidence for X-ray bursts or other X-ray variability. We performed a correlation analysis of the X-ray photons with radio pulses detected in concurrent observations with the Green Bank, Effelsberg, and Parkes telescopes. We find no evidence for any correlations between radio pulse emission and X-ray photons, perhaps suggesting that sporadicity is not due to variations in magnetospheric particle density but to changes in beaming or coherence.
机译:我们描述了我们对旋转无线电瞬变(Rrats)的无线电和高能性能的研究。我们发现无线电脉冲强度分布是对数正常的,在两种情况下,电力律尾部明显明显。对于具有宽频率范围内覆盖率的三个RRAT,平均光谱指数为-1.7 + - 0.1,大致在普通脉冲星的范围内。我们不观察到任何Rrats的异常磁场样光谱。我们的94-ks XMM-Newton对高磁场RRAT J1819-1458的观察显示了黑体谱(KT大约130eV),在约1KeV下具有异常吸收特征。我们没有发现X射线突发或其他X射线变异的证据。我们对与绿色银行,Effelsberg和Parkes望远镜一起检测到的无线电脉冲的X射线光子的相关分析。我们发现没有证据表明无线电脉冲发射和X射线光子之间的任何相关性,也许表明散热性不是由于磁体颗粒密度的变化,而是在光束或相干性的变化。

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