García Rafael A, Turck-Chièze Sylvaine, Jiménez-Reyes Sebastian J, Ballot Jérôme, Pallé Pere L, Eff-Darwich Antonio, Mathur Savita, Provost Janine
DSM/DAPNIA/Service d'Astrophysique, CEA Saclay, 91191 Gif-sur-Yvette Cedex, France.
Science. 2007 Jun 15;316(5831):1591-3. doi: 10.1126/science.1140598. Epub 2007 May 3.
Solar gravity modes have been actively sought because they directly probe the solar core (below 0.2 solar radius), but they have not been conclusively detected in the Sun because of their small surface amplitudes. Using data from the Global Oscillation at Low Frequency instrument, we detected a periodic structure in agreement with the period separation predicted by the theory for gravity dipole modes. When studied in relation to simulations including the best physics of the Sun determined through the acoustic modes, such a structure favors a faster rotation rate in the core than in the rest of the radiative zone.
太阳重力模式一直是人们积极探寻的对象,因为它们能直接探测太阳核心(太阳半径0.2以下),但由于其在太阳表面的振幅较小,尚未在太阳上得到确凿探测。利用低频全球振荡仪器的数据,我们检测到一种周期性结构,与重力偶极模式理论预测的周期间距相符。当结合包含通过声学模式确定的太阳最佳物理特性的模拟进行研究时,这样一种结构表明核心的自转速度比辐射区其他部分更快。