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首页> 外文期刊>The Astrophysical journal >AN UPPER BOUND FROM HELIOSEISMOLOGY ON THE STOCHASTIC BACKGROUND OF GRAVITATIONAL WAVES
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AN UPPER BOUND FROM HELIOSEISMOLOGY ON THE STOCHASTIC BACKGROUND OF GRAVITATIONAL WAVES

机译:重力波随机背景下的流变学上限

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The universe is expected to be permeated by a stochastic background of gravitational radiation of astrophysical and cosmological origin. This background is capable of exciting oscillations in solar-like stars. Here we show that solar-like oscillators can be employed as giant hydrodynamical detectors for such a background in the μHz to mHz frequency range, which has remained essentially unexplored until today. We demonstrate this approach by using high-precision radial velocity data for the Sun to constrain the normalized energy density of the stochastic gravitational-wave background around 0.11?mHz. These results open up the possibility for asteroseismic missions like CoRoT and Kepler to probe fundamental physics.
机译:预计宇宙将被天文学和宇宙学起源的重力辐射的随机背景所渗透。这种背景能够激发类似太阳的恒星产生的振荡。在这里,我们证明了在这样的背景下,从μHz到mHz的频率范围,类似太阳的振荡器可以用作巨型水动力探测器,直到今天,它仍然基本上未被开发。我们通过使用太阳的高精度径向速度数据将随机引力波背景的归一化能量密度约束在0.11?mHz附近来证明这种方法。这些结果为诸如CoRoT和Kepler之类的宇航任务探索基础物理学提供了可能性。

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