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首页> 外文期刊>The Astrophysical journal >ORBITAL PARAMETERS FOR THE X-RAY PULSAR IGR J16393-4643
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ORBITAL PARAMETERS FOR THE X-RAY PULSAR IGR J16393-4643

机译:X射线脉冲IGR J16393-4643的轨道参数

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With recent and archival Rossi X-Ray Timing Explorer (RXTE) X-ray measurements of the heavily obscured X-ray pulsar IGR J16393-4643, we carried out a pulse timing analysis to determine the orbital parameters. Assuming a circular orbit, we phase-connected data spanning over 1.5 yr. The most likely orbital solution has a projected semima-jor axis of 43 ± 2 lt-s and an orbital period of 3.6875 ± 0.0006 days. This implies a mass function of 6.5 ±1.1 solar mass and confirms that this INTEGRAL source is a high-mass X-ray binary (HMXB) system. By including eccentricity in the orbital model, we find e < 0.25 at the 2 σ level. The 3.7 day orbital period and the previously known ~910 s pulse period place the system in the region of the Corbet diagram populated by supergiant wind accretors, and the low eccentricity is also consistent with this type of system. Finally, it should be noted that although the 3.7 day solution is the most likely one, we cannot completely rule out two other solutions with orbital periods of 50.2 and 8.1 days.
机译:通过对最近被严重模糊的X射线脉冲星IGR J16393-4643进行的Rossi X射线定时资源管理器(RXTE)X射线测量,我们进行了脉冲定时分析,以确定轨道参数。假设是圆形轨道,我们将跨越1.5年的数据相连接。最可能的轨道解决方案是投影的半长轴为43±2 lt-s,轨道周期为3.6875±0.0006天。这意味着质量函数为6.5±1.1太阳质量,并确认此INTEGRAL源是高质量X射线二进制(HMXB)系统。通过将偏心率包括在轨道模型中,我们发现在2σ水平处e <0.25。 3.7天的轨道周期和先前已知的〜910 s脉冲周期将系统置于由超级风力吸积体组成的Corbet图区域中,并且低偏心率也与这种类型的系统一致。最后,应该指出的是,尽管最可能采用3.7天的解决方案,但我们不能完全排除轨道周期分别为50.2和8.1天的其他两种解决方案。

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