论文标题
低压和中间质量恒星中的对流边界混合I。
Convective boundary mixing in low- and intermediate-mass stars I. Core properties from pressure-mode asteroseismology
论文作者
论文摘要
对流边界混合(CBM)在恒星进化中无处不在。在模型中,这是匹配簇,二进制和单颗星的观察约束的必要成分。我们计算“有效的过冲”度量,这些度量反映了混合程度,并且可能与恒星演化代码中设置的输入过冲值有显着差异。我们使用压力模式的约束来推断开普勒和Corot主序列的CBM性质以及次级振荡器,以及两个径向速度目标(Procyon A和$α$ CEN A)。总的来说,这些目标使我们能够确定测量精度,出色的光谱类型和过冲的实现如何影响星空溶液。通过这些新措施,我们发现大多数恒星的“有效过冲”符合物理期望以及二进制和簇的校准。但是,在Corot场中的两个F-Star(HD 49933和HD 181906)仍然需要在模型中高过高。由于寿命短,这些恒星可能很难识别。我们证明,径向模式和非radial模式之间的不一致将紫罗兰震动解决方案驱动到具有高效的CBM的极端结构,这是不可避免的结果。了解此类恒星看似异常的物理学的原因对于从具有可比的时间表长度的TESS数据中推断出准确的恒星参数至关重要。
Convective boundary mixing (CBM) is ubiquitous in stellar evolution. It is a necessary ingredient in the models in order to match observational constraints from clusters, binaries and single stars alike. We compute `effective overshoot' measures that reflect the extent of mixing and which can differ significantly from the input overshoot values set in the stellar evolution codes. We use constraints from pressure modes to infer the CBM properties of Kepler and CoRoT main-sequence and subgiant oscillators, as well as in two radial velocity targets (Procyon A and $α$ Cen A). Collectively these targets allow us to identify how measurement precision, stellar spectral type, and overshoot implementation impact the asteroseismic solution. With these new measures we find that the `effective overshoot' for most stars is in line with physical expectations and calibrations from binaries and clusters. However, two F-stars in the CoRoT field (HD 49933 and HD 181906) still necessitate high overshoot in the models. Due to short mode lifetimes, mode identification can be difficult in these stars. We demonstrate that an incongruence between the radial and non-radial modes drives the asteroseismic solution to extreme structures with highly-efficient CBM as an inevitable outcome. Understanding the cause of seemingly anomalous physics for such stars is vital for inferring accurate stellar parameters from TESS data with comparable timeseries length.