论文标题
一类新的罗氏叶填充热的subdwarf二进制文件
A new class of Roche lobe-filling hot subdwarf binaries
论文作者
论文摘要
我们介绍了第二个二进制文件的发现,其中有一个罗氏叶填充热的细分,将质量转移到白矮人(WD)伴侣。使用Zwicky瞬态设施的数据发现了这个56分钟的二进制。光谱观察结果揭示了He-Sdob恒星的有效温度为$ t _ {\ rm eff} = 33,700 \ pm1000 $ k,而表面重力为$ log(g)= 5.54 \ pm0.11 $。 GTC+Hipercam光曲线以He-Sdob Star的椭圆形变形为主,并通过积聚磁盘以及WD的弱月球显示He-Sdob的Eclipse。我们推断出$ m _ {\ rm sdob} = 0.41 \ pm0.04 $ m $ _ \ odot $和$ m _ {\ rm wd} = 0.68 \ pm0.05 $ m $ m $ _ \ odot $。薄弱的黯然失色意味着WD黑色体温为$ 63,000 \ pm10,000 $ k和半径$ r _ {\ rm wd} = 0.0148 \ pm0.0020 $ m $ m $ _ \ odot $,如预期的,因为这样的高温是这样的高温。 HE-SDOB恒星可能正在经历氢壳燃烧,并将继续以$ \ \ \ 1 $ myrs的质量以$ 10^{ - 9} m_ \ odot {\ rm yr yr}^{ - 1} $的速率,与高WD温度一致。然后,热门少量将变成WD,系统将合并为$ \ of \ \ \ 30 $ myrs。我们建议,银河系红色可能会发现在短暂的壳燃烧阶段优先找到Roche Lobe填充系统。使用红色校正样品的研究应揭示大量的氦气燃烧热分子,其中$ t _ {\ rm eff} \大约25,000 $ k的二进制文件(60-90分钟)使用WDS。尽管尚未接触,但这些二进制文件最终将通过重力波发射接触,并以亚光热核超新星爆炸或演变成大量的单WD。
We present the discovery of the second binary with a Roche lobe-filling hot subdwarf transferring mass to a white dwarf (WD) companion. This 56 minute binary was discovered using data from the Zwicky Transient Facility. Spectroscopic observations reveal an He-sdOB star with an effective temperature of $T_{\rm eff}=33,700\pm1000$ K and a surface gravity of $log(g)=5.54\pm0.11$. The GTC+HiPERCAM light curve is dominated by the ellipsoidal deformation of the He-sdOB star and shows an eclipse of the He-sdOB by an accretion disk as well as a weak eclipse of the WD. We infer a He-sdOB mass of $M_{\rm sdOB}=0.41\pm0.04$ M$_\odot$ and a WD mass of $M_{\rm WD}=0.68\pm0.05$ M$_\odot$. The weak eclipses imply a WD black-body temperature of $63,000\pm10,000$ K and a radius $R_{\rm WD}=0.0148\pm0.0020$ M$_\odot$ as expected for a WD of such high temperature. The He-sdOB star is likely undergoing hydrogen shell burning and will continue transferring mass for $\approx1$ Myrs at a rate of $10^{-9} M_\odot {\rm yr}^{-1}$ which is consistent with the high WD temperature. The hot subdwarf will then turn into a WD and the system will merge in $\approx30$ Myrs. We suggest that Galactic reddening could bias discoveries towards preferentially finding Roche lobe-filling systems during the short-lived shell burning phase. Studies using reddening corrected samples should reveal a large population of helium core-burning hot subdwarfs with $T_{\rm eff}\approx25,000$ K in binaries of 60-90 minutes with WDs. Though not yet in contact, these binaries would eventually come into contact through gravitational wave emission and explode as a sub-luminous thermonuclear supernova or evolve into a massive single WD.