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g-mode trapping and period spacings in hot B subdwarf stars

机译:G-Mode捕获和Hot B Subdwarf Stars中的周期间距

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Hot B subdwarfs (sdB) are hot and compact helium core burning stars of nearly half a solar mass that can develop pulsational instabilities driving acoustic and/or gravity modes. These evolved stars are expected to be chemically stratified with an almost pure hydrogen envelope surrounding a helium mantle on top of a carbon/oxygen enriched core. However, the sdB stars pulsating in g-modes show regularities in their observed period distributions that, surprisingly (at first sight), are typical of the behavior of high order g-modes in chemically homogeneous (i.e., non-stratified) stars. This led to a claim that hot B subdwarfs could be much less chemically stratified than previously thought. Here, we reinvestigate trapping effects affecting g-modes in sdB stars. We show that standard stratified models of such stars can also produce nearly constant period spacings in the low frequency range similar to those found in g-mode spectra of sdB stars monitored with Kepler.
机译:热的B Subdwarfs(SDB)是近一半的炎热和紧凑型氦芯燃烧恒星,其可能会开发脉动不稳定性驱动声学和/或重力模式。这些进化的恒星预计将用围绕碳/氧含量的氦气罩围绕氦地幔的几乎纯的氢封面进行化学分层。然而,在G-MODES中脉动的SDB恒星在其观察到的周期分布中呈现规律,令人惊讶地(一见钟情)是典型的高阶G-MODES在化学均匀(即,非分层)恒星中的行为。这导致了一个声明,热的B子瓦夫可能比以前想象的要少得多。在这里,我们可以加入影响SDB恒星中G模式的捕获效果。我们表明,这种恒星的标准分层模型还可以在低频范围内产生几乎恒定的时段间距,类似于用拍摄器监视的SDB恒星的G模式光谱中的那些。

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