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首页> 外文期刊>Astronomy and astrophysics >Discriminating solar and antisolar differential rotation in high-precision light curves
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Discriminating solar and antisolar differential rotation in high-precision light curves

机译:区分高精度光曲线中的太阳和反太阳差速旋转

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Context. Surface differential rotation (DR) is one major ingredient of the magnetic field generation process in the Sun and likely in other stars. The term solar-like differential rotation describes the observation that solar equatorial regions rotate faster than polar ones. The opposite effect of polar regions rotating faster than equatorial ones (termed as antisolar DR) has only been observed in a few stars, although there is evidence from theoretical dynamo models. Aims. We present a new method of detecting the sign of DR (i.e., solar-like or antisolar DR) by analyzing long-term high-precision light curves with the Lomb-Scargle periodogram. Methods. We compute the Lomb-Scargle periodogram and identify a set of significant periods Pk, which we associate with active regions located at different latitudes on the stellar surface. If detectable, the first harmonics () of these periods were identified to compute their peak-height-ratios rk:= h(P'k)/h(Pk). Spots rotating at lower latitudes generate less sine-shaped light curves, which requires additional power in the harmonics, and results in larger ratios rk. Comparing different ratios rk and the associated periods Pk yields information about the spot latitudes, and reveals the sign of DR. Results. We tested our method on different sets of synthetic light curves all exhibiting solar-like DR. The number of cases where our method detects antisolar DR is the false-positive rate of our method. Depending on the set of light curves, the noise level, the required minimum peak separation, and the presence or absence of spot evolution, our method fails to detect the correct sign in at most 20%. We applied our method to 50 Kepler G stars and found 21–34 stars with solar-like DR and 5–10 stars with antisolar DR, depending on the minimum peak separation. Conclusions. The method is able to determine the sign of DR in a statistical way with a low false-positive rate. Applying our method to real data might suggest that – within the uncertainties – antisolar DR was detected in 5–10 Kepler stars.
机译:上下文。表面差旋转(DR)是太阳以及其他恒星中磁场产生过程的主要成分之一。类似于太阳的差速旋转一词描述了这样的观察:太阳赤道区域的旋转速度快于极地区域。尽管理论上有发电机模型的证据,但仅在少数几颗恒星中观察到了极性区域旋转速度快于赤道区域的相反效果(称为反太阳DR)。目的我们提出了一种通过用Lomb-Scargle周期图分析长期高精度的光曲线来检测DR征兆的新方法(即类太阳或反太阳DR)。方法。我们计算Lomb-Scargle周期图并确定一组有效周期Pk,并将其与位于恒星表面上不同纬度的活动区域相关联。如果可检测到,则确定这些周期的一次谐波()以计算其峰高比rk:= h(P'k)/ h(Pk)。在较低纬度旋转的光斑产生较少的正弦形光曲线,这需要谐波中的附加功率,并导致更大的比率rk。比较不同的比率rk和相关的周期Pk可以得出有关点纬度的信息,并揭示出DR的征兆。结果。我们在不同组的合成光曲线上测试了我们的方法,这些曲线均表现出类似于太阳的DR。我们的方法检测到反太阳DR的情况数是我们方法的假阳性率。根据光曲线集,噪声水平,所需的最小峰分离以及是否存在斑点发展,我们的方法最多只能检测20%的正确信号。我们将我们的方法应用于50个开普勒G星,并发现了21–34颗类似太阳的DR和5–10颗带有反太阳DR的卫星,具体取决于最小的峰间距。结论。该方法能够以低假阳性率的统计方式确定DR的征兆。将我们的方法应用于真实数据可能表明-在不确定性范围内-在5-10个开普勒星中检测到了反太阳DR。

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