论文标题
X射线二进制文件的喷气机和光盘的日食,是理解喷气物理和二进制参数的强大工具
Eclipses of jets and discs of X-ray binaries as a powerful tool for understanding jet physics and binary parameters
论文作者
论文摘要
我们计算了供体恒星的日食X射线二进制喷射光谱能量分布和光曲线的预期影响。喷气机将被所有倾斜角度黯然失色,只有沿射流发生的射流的高度是由轨道参数设置的。通常,日食将导致射流发射的5-10 \%降低,范围内的波长很少,并带有周期性调制。在具有较高倾斜角,相对均匀质量比和适度的喷射速度的理想系统中,日食可能会更深。我们讨论如何使用日食来测量二进制系统参数以及喷气机的基础高度。我们还讨论了如何通过建立与紧凑型圆锥形扁平光谱喷气机的标准配方的偏差以及确定eclips的进口和出口持续时间并测量喷气机的横向尺寸来制定偏离标准配方的偏差,从而可以如何进行喷气物理模型的更详细的测试。我们提供了对不同类别系统的期望的代表性计算,表明在无线电频段中显示出这种效果的最有希望的目标是较长的“环礁” - 类中子星X射线X射线二进制二进制文件,而在光学和红外频段中,最好的候选者可能是最边缘的黑洞X射线X射线二进制室。我们还讨论了内喷射的外部积聚盘的效果。
We calculate the expected effects on the spectral energy distributions and light curves in X-ray binary jets from eclipses by the donor stars. Jets will be eclipsed for all inclination angles, with just the height along the jet where the eclipse takes place being set by the orbital parameters. Typically, eclipses will lead to 5-10\% reductions in the jet emission over a range of a factor of few in wavelength with a periodic modulation. In ideal systems with high inclination angles, relatively even mass ratios, and modest jet speeds, the eclipses may be deeper. We discuss how eclipses can be used to measure binary system parameters, as well as the height of the bases of the jets. We also discuss how, with data sets that will likely require future facilities, more detailed tests of models of jet physics could be made, by establishing deviations from the standard recipes for compact conical flat spectrum jets, and by determining the ingress and egress durations of the eclipses and measuring the transverse size of the jets. We provide representative calculations of expectations for different classes of systems, demonstrating that the most promising target for showing this effect in the radio band are the longer period "atoll"-class neutron star X-ray binaries, while in the optical and infrared bands, the best candidates are likely to be the most edge-on black hole X-ray binaries. We also discuss the effects of the outer accretion disc eclipsing the inner jet.