非线性星震学的摇篮:紧致脉动恒星振荡模态变率的观测

Q3 Multidisciplinary
Weikai ZONG, Stéphane CHARPINET, Gérard VAUCLAIR, Jian-Ning FU, Xiao-Yu MA
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引用次数: 0

摘要

我们从理论和观测两方面简要回顾了非线性地震研究的进展。根据谐振模间弱非线性相互作用理论,它们的振幅和频率可以按照各种模式调制。然而,地面光度监测很难很好地描述这些细微的调制。开普勒宇宙飞船提供了一个新的窗口,可以找到明确的振幅和频率调制的证据,从而在脉动白矮星和热B亚矮星中首次发现这种变化。沿着这个方向,一项由开普勒监测的紧凑型脉动器振荡模式特性的系统调查表明,模式变化可能是一种普遍现象,而标准的线性非径向脉动理论仍然无法解释这种现象。为了坚定地得出这个结论,这项调查现在已经扩展到更大的背景下,包括K2和TESS观测到的致密恒星。我们期望这项扩展的调查将有助于约束恒星振荡中控制弱非线性效应的关键参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The cradle of nonlinear asteroseismology: observations of oscillation mode variability in compact pulsating stars
We briefly review progress in developing a pathway to nonlinear astereoseismology, both from theoretical and observational aspects. As predicted by the theory of weak nonlinear interactions between resonant modes, their amplitude and frequency can be modulated according to vari-ous kinds of patterns. However, those subtle modulations could hardly be well characterized from ground-based photometric monitoring. The Kepler spacecraft offered a new window to find clear-cut evidence of well-determined amplitude and frequency modulations, leading to the first discoveries of such variations in pulsating white dwarf and hot B subdwarf stars. Fol-lowing that direction, a systematic survey of oscillation mode properties in compact pulsators monitored by Kepler suggests that mode variability is likely a common phenomenon, which remain unaccounted for by standard linear non-radial pulsation theory. To reach this conclusion firmly, the survey has now been extended to a larger context including compact stars observed by K2 and TESS. We expect that this extended survey will help to constrain key parameters governing weak nonlinear effects in stellar oscillations.
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来源期刊
Bulletin de la Societe Royale des Sciences de Liege
Bulletin de la Societe Royale des Sciences de Liege Multidisciplinary-Multidisciplinary
CiteScore
0.90
自引率
0.00%
发文量
11
期刊介绍: The ‘Société Royale des Sciences de Liège" (hereafter the Society) regularly publishes in its ‘Bulletin" original scientific papers in the fields of astrophysics, biochemistry, biophysics, biology, chemistry, geology, mathematics, mineralogy or physics, following peer review approval.
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