论文标题
KIC 9406652:灾难性变量中倾斜磁盘的实验室
KIC 9406652: A laboratory of the tilted disk in cataclysmic variable stars
论文作者
论文摘要
KIC 9406652是一种灾难性变量(CV),被标记为“ IW和-Type Star”,显示出具有振动性变化的停滞重复,该振动性通过亮度终止。该系统显示出负超峰,半周期性变化的周期比轨道周期稍短,并且超级轨道信号却据信据信均源自前进,倾斜的吸积盘。我们已经重新检查了其开普勒光曲线,延伸了1500 d。根据IW和型光变化的循环,负超烟的频率显示出可再现的变化:在亮度期间迅速下降,在停滞期间逐渐增加。它们被解释为径向质量分布的急剧变化和倾斜磁盘的扩展,这是IW和恒星现有模型的预期。负超块状的通量幅度的恒定幅度证实,它们的光源是横跨倾斜磁盘表面的亮点。在长时间尺度上的一致范围内,负超超烟和超级信号的频率变化,表明它们的共同起源:倾斜磁盘。亮膜上的轨道信号由次级恒星的辐照主导,并随倾斜磁盘的方向而变化。随着超级轨道相位的发展,最小的超级轨道信号以最小的超级信号和轨道相移到了早期轨道相。这是第一个直接证据表明,磁盘被从二元轨道平面倾斜并逆转进取。从超级轨道信号的半散布推断出的磁盘的倾斜角度低于3度。负超块状的光曲线中的多样性支持了这一点,并表明一部分气流会溢出磁盘边缘。因此,这项研究提供了有关简历中倾斜磁盘的丰富信息。
KIC 9406652 is a cataclysmic variable (CV), sub-classified as `IW And-type star', showing a repetition of standstills with oscillatory variations terminated by brightening. This system showed negative superhumps, semi-periodic variations having periods slightly shorter than the orbital period, and super-orbital signals, both of which are believed to originate from a precessing, tilted accretion disk. We have re-examined its Kepler light curve extending over 1500 d. In accordance with a cycle of the IW And-type light variation, the frequency of negative superhumps showed a reproducible variation: a rapid drop during the brightening and a gradual increase during the standstill. They are interpreted as the drastic change in the radial mass distribution and the expansion of the tilted disk, which is not expected from the existing models for IW And stars. The constancy in flux amplitudes of negative superhumps confirms that their light source is the bright spot sweeping across the surface of the tilted disk. The frequencies of negative superhumps and super-orbital signals varied in unison on long timescales, suggesting their common origin: the tilted disk. Orbital signals at the brightening were dominated by the irradiation of the secondary star and varied with the orientation of the tilted disk; the amplitude was maximized at the minimum of super-orbital signals and the light maximum shifted to early orbital phases as the super-orbital phase advances. This is the first direct evidence that the disk was tilted out of the binary orbital plane and retrogradely precessing. The tilt angle of the disk inferred from semi-amplitudes of super-orbital signals was lower than 3 degrees. The diversity in light curves of negative superhumps supports this and suggests that a part of the gas stream overflows the disk edge. This study thus offers rich information about the tilted disk in CVs.