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An upper limit on the stochastic gravitational-wave background of cosmological origin

机译:宇宙起源的随机引力波背景的上限

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摘要

A stochastic background of gravitational waves is expected to arise from a superposition of a large number of unresolved gravitational-wave sources of astrophysical and cosmological origin. It should cany unique signatures from the earliest epochs in the evolution of the Universe, inaccessible to standard astrophysical observations. Direct measurements of the amplitude of this background are therefore of fundamental importance for understanding the evolution of the Universe when it was younger than one minute. Here we report limits on the amplitude of the stochastic gravitational-wave background using the data from a two-year science run of the Laser Interferometer Gravitational-wave Observatory (LIGO). Our result constrains the energy density of the stochastic gravitational-wave background normalized by the critical energy density of the Universe, in the frequency band around 100 Hz, to be <6.9 × 10~(-6) at 95% confidence. The data rule out models of early Universe evolution with relatively large equation-of-state parameter, as well as cosmic (super)string models with relatively small string tension that are favoured in some string theory models. This search for the stochastic background improves on the indirect limits from Big Bang nucleosynthesis and cosmic microwave background at 100 Hz.
机译:引力波的随机背景被认为是由于天体物理学和宇宙学起源的大量未解析引力波源的叠加而产生的。它应该在宇宙演化的最早时期就具有独特的特征,而标准的天体物理学观测则无法做到这一点。因此,直接测量该背景的振幅对于理解宇宙不到一分钟时的演化至关重要。在这里,我们使用激光干涉仪引力波天文台(LIGO)的两年科学运行数据来报告随机引力波背景的幅度限制。我们的结果将在100 Hz左右的频带中由宇宙的临界能量密度归一化的随机重力波背景的能量密度限制为<6.9×10〜(-6),置信度为95%。数据排除了状态方程参数较大的早期宇宙演化模型,以及某些弦理论模型中偏爱的具有较小弦张力的宇宙(超)弦模型。对随机本底的搜索改善了来自Big Bang核合成和100 Hz宇宙微波本底的间接极限。

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  • 来源
    《Nature 》 |2009年第7258期| 990-994| 共5页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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