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Relation between the X-ray and Optical Luminosities in Binary Systems with Accreting Nonmagnetic White Dwarfs

机译:具有吸收性非磁性白矮星的二元系统的X射线与光度之间的关系

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We investigate the relation between the optical (g-band) and X-ray (0.5–10 keV) luminosities of accreting nonmagnetic white dwarfs. According to the present-day counts of the populations of star systems in our Galaxy, these systems have the highest space density among the close binary systems with white dwarfs. We show that the dependence of the optical luminosity of accreting white dwarfs on their X-ray luminosity forms a fairly narrow one-parameter curve. The typical half-width of this curve does not exceed 0.2–0.3 dex in optical and X-ray luminosities, which is essentially consistent with the amplitude of the aperiodic flux variability for these objects. At X-ray luminosities L_x ~ 10~(32) erg s~(?1) or lower, the optical g-band luminosity of the accretion flow is shown to be related to its X-ray luminosity by a factor ~2?3. At even lower X-ray luminosities (L_x less, similar 10~(30) erg s~(?1)), the contribution from the photosphere of the white dwarf begins to dominate in the optical spectrum of the binary system and its optical brightness does not drop below M_g ~ 13?14. Using the latter fact, we show that in current and planned X-ray sky surveys, the family of accreting nonmagnetic white dwarfs can be completely identified to the distance determined by the sensitivity of an optical sky survey in this region. For the Sloan Digital Sky Survey (SDSS) with a limiting sensitivity m_g ~ 22.5, this distance is ~400?600 pc.
机译:我们研究了吸积的非磁性白矮星的光学(g波段)和X射线(0.5-10 keV)光度之间的关系。根据我们银河系中恒星系统的当前计数,这些系统在具有白矮星的紧密双星系统中具有最高的空间密度。我们表明,积聚的白矮星的光学发光度对它们的X射线发光度的依赖性形成了一条相当窄的一参数曲线。该曲线的典型半峰宽在光学和X射线发光度上不超过0.2-0.3 dex,这与这些物体的非周期性通量可变性的幅度基本一致。在X射线光度L_x〜10〜(32)erg s〜(?1)或更低时,吸积流的光学g波段光度与X射线光度的相关性约为〜2?3。 。在更低的X射线光度下(L_x较小,近似10〜(30)erg s〜(?1)),白矮星光球的贡献开始在二元系统的光谱及其光学亮度中占主导地位。不低于M_g〜13?14。利用后一个事实,我们表明,在当前和计划进行的X射线天空勘测中,可以将吸积的非磁性白矮星族完全识别为该区域中光学天空勘测的灵敏度所确定的距离。对于具有限制灵敏度m_g〜22.5的斯隆数字天空测量(SDSS),此距离约为〜400-600 pc。

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