首页> 外文期刊>The Astrophysical journal >On the X-Ray Light Curve, Pulsed-Radio Emission, and Spin Frequency Evolution of the Transient Anomalous X-Ray Pulsar XTE J1810–197 during Its X-Ray Outburst
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On the X-Ray Light Curve, Pulsed-Radio Emission, and Spin Frequency Evolution of the Transient Anomalous X-Ray Pulsar XTE J1810–197 during Its X-Ray Outburst

机译:关于瞬态异常X射线脉冲星XTE J1810–197在其X射线爆发期间的X射线光曲线,脉冲无线电发射和自旋频率演变

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We show that (1) the long-term X-ray outburst light curve of the transient AXP XTE J1810–197 can be accounted for by a fallback disk that is evolving toward quiescence through a disk instability after having been heated by a soft gamma-ray burst, (2) the spin-frequency evolution of this source in the same period can also be explained by the disk torque acting on the magnetosphere of the neutron star, and (3) most significantly, recently observed pulsed-radio emission from this source coincides with the epoch of minimum X-ray luminosity. This is natural in terms of a fallback-disk model, as the accretion power becomes so low that it is not sufficient to suppress the beamed radio emission from XTE J1810–197.
机译:我们证明(1)瞬态AXP XTE J1810–197的长期X射线爆发光曲线可以由后备盘解释,该后备盘在被软伽玛射线加热后通过盘的不稳定性逐渐趋于静止。射线爆发,(2)该源在同一时期内的自旋频率演变也可以用作用在中子星磁层上的盘转矩来解释,(3)最重要的是,最近观测到的由此产生的脉冲无线电发射光源与最小X射线光度的时代相吻合。就后备磁盘模型而言,这是很自然的,因为吸积功率变得如此之低,以至于不足以抑制XTE J1810-197发出的波束无线电发射。

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