首页> 外文期刊>The Astrophysical journal >JOINT Hα AND X-RAY OBSERVATIONS OF MASSIVE X-RAY BINARIES. III. THE Be X-RAY BINARIES HDE 245770 = A0535+26 AND X PERSEI
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JOINT Hα AND X-RAY OBSERVATIONS OF MASSIVE X-RAY BINARIES. III. THE Be X-RAY BINARIES HDE 245770 = A0535+26 AND X PERSEI

机译:大量X射线双星的联合Hα和X射线观察。三, BE X射线双星HDE 245770 = A0535 + 26和X PERSEI

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摘要

We present results from an Hα monitoring campaign of the Be X-ray binary systems HDE 245770 = A0535+26 and X Per. We use the Hα equivalent widths together with adopted values of the Be star effective temperature, disk inclination, and disk outer boundary to determine the half-maximum emission radius of the disk as a function of time. The observations of HDE 245770 document the rapid spectral variability that apparently accompanied the regeneration of a new circumstellar disk. This disk grew rapidly during the years 1998-2000, but then slowed in growth in subsequent years. The outer disk radius is probably truncated by resonances between the disk gas and neutron star orbital periods. Two recent X-ray outbursts appear to coincide with the largest disk half-maximum emission radius attained over the last decade. Our observations of X Per indicate that its circumstellar disk has recently grown to near-record proportions, and concurrently the system has dramatically increased in X-ray flux, presumably the result of enhanced mass accretion from the disk. We find that the Hα half-maximum emission radius of the disk surrounding X Per reached a size about 6 times larger than the stellar radius, a value, however, that is well below the minimum separation between the Be star and neutron star. We suggest that spiral arms excited by tidal interaction at periastron may help lift disk gas out to radii where accretion by the neutron star companion becomes more effective.
机译:我们介绍了Be X射线二进制系统HDE 245770 = A0535 + 26和X Per的Hα监视活动的结果。我们使用Hα等效宽度以及Be Star有效温度,磁盘倾角和磁盘外边界的采用值来确定磁盘随时间变化的最大半衰期。 HDE 245770的观测结果证明了快速的光谱变异性,显然伴随着新的恒星盘的再生。该磁盘在1998-2000年期间快速增长,但随后的几年中增长速度减慢。盘外半径可能被盘气和中子星轨道周期之间的共振所截断。最近发生的两次X射线爆发似乎与过去十年中获得的最大磁盘半最大发射半径一致。我们对X Per的观察表明,其星际盘最近已增长到接近记录的比例,同时,该系统的X射线通量也急剧增加,这大概是由于盘的质量吸积增强的结果。我们发现,围绕X Per的圆盘的Hα半最大发射半径的大小约为恒星半径的6倍,但是这个值远低于Be星和中子星之间的最小间隔。我们建议,在星体周围由潮汐相互作用激发的螺旋臂可能有助于将磁盘气体提升到半径,在该半径处中子星伴星的积聚变得更有效。

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