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OPTICAL AND X-RAY OBSERVATIONS OF IGR J00291+5934 IN QUIESCENCE

机译:静止时IGR J00291 + 5934的光学和X射线观察

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摘要

We report on optical and X-ray observations of the accretion-powered millisecond pulsar IGR J00291+5934 in quiescence. Time-resolved I-band photometry has been obtained with the 4.2 m William Herschel Telescope, while a 3 ks Chandra observation provided contemporaneous X-ray coverage. We found an unabsorbed 0.5-10 keV X-ray flux of 1 × 10~(-13) erg cm~(-2) s~(-1), which implies that the source was in quiescence at the time of the optical observations. Nevertheless, the optical I-band light curve of IGR J00291+5934 shows evidence for strong flaring. After removal of the strongest flares, we find evidence for an orbital modulation in the phase-folded I-band light curve. The overall modulation can be described by effects resulting from the presence of a superhump. Comparing our light curve with that reported recently we find evidence for a change in the quiescent base level. Similar changes have now been reported for four soft X-ray transients, implying that they may be a common feature of such systems in quiescence. Furthermore, the maximum in our folded light curve occurs at a different phase than observed before.
机译:我们在静止状态下报告了以增生为动力的脉冲星IGR J00291 + 5934的光学和X射线观察结果。使用4.2 m的William Herschel望远镜获得了时间分辨的I波段光度法,而3 ks Chandra观测提供了同时的X射线覆盖。我们发现未吸收的0.5-10 keV X射线通量为1×10〜(-13)erg cm〜(-2)s〜(-1),这意味着在进行光学观察时,光源处于静止状态。但是,IGR J00291 + 5934的I波段光学曲线显示出强烈的扩口迹象。去除最强的耀斑后,我们找到了相折叠I波段光曲线中轨道调制的证据。总体调制可以通过超峰的存在所产生的影响来描述。将我们的光曲线与最近报道的光曲线进行比较,我们发现了静态基础水平发生变化的证据。现在已经报道了四个软X射线瞬变的类似变化,这表明它们可能是此类系统处于静止状态的共同特征。此外,我们的折叠光曲线中的最大值发生在与之前观察到的相位不同的相位上。

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  • 来源
    《The Astrophysical journal》 |2008年第1期|615-619|共5页
  • 作者单位

    SRON, Netherlands Institute for Space Research, 3584 CA Utrecht, The Netherlands Harvard-Smithsonian Center for Astrophysics, Cambridge, MA 02138 Astronomical Institute, Utrecht University, 3508 TA, Utrecht, The Netherlands;

    Harvard-Smithsonian Center for Astrophysics, Cambridge, MA 02138;

    Astronomy and Astrophysics, Department of Physics, University of Warwick, Coventry CV4 7AL, UK Harvard-Smithsonian Center for Astrophysics, Cambridge, MA 02138;

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