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DETECTION OF PERIODIC SIGNATURES IN THE SOLAR POWER SPECTRUM ON THE TRACK OF L=1 GRAVITY MODES

机译:L = 1重力模式轨道上的太阳能频谱中周期签名的检测

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In the present work we show robust indications of the existence of g modes in the Sun using 10 years of GOLF data. The present analysis is based on the exploitation of the collective properties of the predicted low-frequency (25 to 140 μHz) g modes: their asymptotic nature, which implies a quasi equidistant separation of their periods for a given angular degree (l). The Power Spectrum (PS) of the Power Spectrum Density (PSD), reveals a significant structure indicating the presence of features (peaks) in the PSD with near equidistant periods corresponding to l=1 modes in the range n=-4 to n=-26. The study of its statistical significance of this feature was fully undertaken and complemented with Monte Carlo simulations. This structure has a confidence level better than 99.86% not to be due to pure noise. Furthermore, a detailed study of this structure suggests that the gravity modes have a much more complex structure than the one initially expected (line-widths, magnetic splittings…). Compared to the latest solar models, the obtained results tend to favor a solar core rotating significantly faster than the rest of the radiative zone. In the framework of the Phoebus group, we have also applied the same methodology to other helioseismology instruments on board SoHO and ground based networks.
机译:在本工作中,我们可以使用10年的高尔夫数据显示太阳中的G模式存在的强大指示。本分析基于预测低频(25至140μHz)G模式的集体特性的利用:它们的渐近性质,这意味着对给定角度(L)的时期的准等距离分离。功率谱密度(PSD)的功率谱(PS),显示了在PSD中具有与L = 1模式的近等距的PSD中的特征(峰值)的存在的显着结构,该范围n = -4至n = n = -26。对该特征的统计显着性进行了研究,并与Monte Carlo模拟进行了完整的。这种结构的置信水平优于99.86%,而不是由于纯噪声。此外,对该结构的详细研究表明,重力模式具有比最初预期的(线宽,磁性分离物......)更复杂的结构。与最新的太阳能模型相比,所获得的结果倾向于有利于太阳芯旋转明显比辐射区域的其余部分更快。在Phoebus集团的框架中,我们还向SOHO和地面网络上的其他HelioSeismology仪器应用了相同的方法。

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