论文标题
在脉冲之间窥视:Ar scorpii中以前看不见的白矮人的远处光谱
Peeking Between the Pulses: The Far-UV Spectrum of the Previously Unseen White Dwarf in AR Scorpii
论文作者
论文摘要
相互作用的二进制AR SCO中的紧凑型物体被广泛推测为迅速旋转的磁化白矮人(WD),但从未直接检测到它。事实证明,隔离其频谱已被证明很困难,因为WD的旋转会产生脉冲同步辐射,从而远远超过了WD的Photosphere。结果,先前对AR SCO的研究无法从哈勃太空望远镜(HST)观察结果中检测到平均远程脉冲光谱中的WD。为了揭示WD的频谱,我们通过计算同步脉冲之间的槽的平均频谱来重新分析这些HST观测值。我们从以前看不见的WD中确定弱频谱特征,并估计其表面温度为11500 $ \ pm $ 500K。此外,在同步脉冲期间,我们检测到与热WD光谱模型一致的宽Lyman-$α$吸收。我们推断出一对热点,温度在23000k至28000k之间,靠近WD的磁极。由于预计WD不会从其伴侣中积聚,因此我们描述了加热磁极的两种可能机制。热点的Lyman-$α$吸收似乎相对不受Zeeman分裂的关注,将WD的场强限制为100 mg,但数据不足以在较低的场强度下搜索预期的微妙的Zeeman分裂。
The compact object in the interacting binary AR Sco has widely been presumed to be a rapidly rotating, magnetized white dwarf (WD), but it has never been detected directly. Isolating its spectrum has proven difficult because the spin-down of the WD generates pulsed synchrotron radiation that far outshines the WD's photosphere. As a result, a previous study of AR Sco was unable to detect the WD in the averaged far-ultraviolet spectrum from a Hubble Space Telescope (HST) observation. In an effort to unveil the WD's spectrum, we reanalyze these HST observations by calculating the average spectrum in the troughs between synchrotron pulses. We identify weak spectral features from the previously unseen WD and estimate its surface temperature to be 11500$\pm$500K. Additionally, during the synchrotron pulses, we detect broad Lyman-$α$ absorption consistent with hot WD spectral models. We infer the presence of a pair of hotspots, with temperatures between 23000K and 28000K, near the magnetic poles of the WD. As the WD is not expected to be accreting from its companion, we describe two possible mechanisms for heating the magnetic poles. The Lyman-$α$ absorption of the hotspots appears relatively undistorted by Zeeman splitting, constraining the WD's field strength to be 100 MG, but the data are insufficient to search for the subtle Zeeman splits expected at lower field strengths.