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Modifying the Standard Disk Model for the Ultraviolet Spectral Analysis of Disk-dominated Cataclysmic Variables. I. The Novalikes MV Lyrae BZ Camelopardalis and V592 Cassiopeiae

机译:修改用于磁盘为主的催化变量的紫外光谱分析的标准磁盘模型。 I. Novalikes MV天琴座BZ骆驼科和V592虎杖科

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摘要

The standard disk is often inadequate to model disk-dominated cataclysmic variables (CVs) and generates a spectrum that is bluer than the observed UV spectra. X-ray observations of these systems reveal an optically thin boundary layer (BL) expected to appear as an inner hole in the disk. Consequently, we truncate the inner disk. However, instead of removing the inner disk, we impose the no-shear boundary condition at the truncation radius, thereby lowering the disk temperature and generating a spectrum that better fits the UV data. With our modified disk, we analyze the archival UV spectra of three novalikes that cannot be fitted with standard disks. For the VY Scl systems MV Lyr and BZ Cam, we fit a hot inflated white dwarf (WD) with a cold modified disk ( M˙ ~ a few 10−9 M⊙ yr−1). For V592 Cas, the slightly modified disk ( M˙ ~ 6 × 10−9 M⊙ yr−1) completely dominates the UV. These results are consistent with Swift X-ray observations of these systems, revealing BLs merged with ADAF-like flows and/or hot coronae, where the advection of energy is likely launching an outflow and heating the WD, thereby explaining the high WD temperature in VY Scl systems. This is further supported by the fact that the X-ray hardness ratio increases with the shallowness of the UV slope in a small CV sample we examine. Furthermore, for 105 disk-dominated systems, the International Ultraviolet Explorer spectra UV slope decreases in the same order as the ratio of the X-ray flux to optical/UV flux: from SU UMa’s, to U Gem’s, Z Cam’s, UX UMa’s, and VY Scl’s.
机译:标准圆盘通常不足以对圆盘主导的催化变量(CV)进行建模,并且生成的光谱比观察到的UV光谱更蓝。对这些系统的X射线观察表明,光学薄边界层(BL)有望以圆盘内孔的形式出现。因此,我们截断了内部磁盘。但是,我们没有删除内部磁盘,而是在截断半径处施加了无剪切边界条件,从而降低了磁盘温度并生成了更适合UV数据的光谱。使用我们的改良圆盘,我们分析了三个无法安装标准圆盘的新星样的档案紫外线光谱。对于VY Scl系统MV Lyr和BZ Cam,我们在热膨胀的白矮星(WD)上安装了经过改装的冷盘( <移动者accent =“ true”> M ˙ 〜a少数10 −9 M⊙yr −1 )。对于V592 Cas,经过稍微修改的磁盘( <移动器accent =“ true”> M ˙ 〜6×10 −9 M⊙yr - 1 )完全控制UV。这些结果与Swift X射线对这些系统的观察结果一致,揭示了BL与ADAF样流和/或热电晕合并,其中能量的对流可能导致流出并加热WD,从而解释了WD温度高。 VY Scl系统。在我们检查的小型CV样品中,X射线硬度比随UV斜度的浅浅而增加,这进一步证明了这一点。此外,对于105个以磁盘为主导的系统,International Ultraviolet Explorer光谱的UV斜率按X射线通量与光学/ UV通量之比的相同顺序减小:从SU UMa,U Gem,Z Cam,UX UMa,和VY Scl。

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