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Results of an all-sky high-frequency Einstein@Home search for continuous gravitational waves in LIGO's fifth science run

机译:LIGO第五次科学运行中全天候的高频爱因斯坦@居所搜索连续引力波的结果

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摘要

We present results of a high-frequency all-sky search for continuous gravitational waves from isolated compact objects in LIGO's fifth science run (S5) data, using the computing power of the Einstein@Home volunteer computing project. This is the only dedicated continuous gravitational wave search that probes this high-frequency range on S5 data. We find no significant candidate signal, so we set 90% confidence level upper limits on continuous gravitational wave strain amplitudes. At the lower end of the search frequency range, around 1250 Hz, the most constraining upper limit is 5.0×10-24, while at the higher end, around 1500 Hz, it is 6.2×10-24. Based on these upper limits, and assuming a fiducial value of the principal moment of inertia of 1038 kg m2, we can exclude objects with ellipticities higher than roughly 2.8×10-7 within 100 pc of Earth with rotation periods between 1.3 and 1.6 milliseconds.
机译:我们利用Einstein @ Home志愿者计算项目的计算能力,对LIGO第五次科学运行(S5)数据中来自孤立的紧凑物体的连续全重力波进行了高频全天搜索。这是唯一可以在S5数据上探测此高频范围的专用连续重力波搜索。我们没有发现明显的候选信号,因此我们为连续重力波应变幅度设置了90%的置信度上限。在搜索频率范围的较低端(约1250 Hz),最大约束上限为5.0×10-24,而在较高频率(约1500 Hz)处,上限为6.2×10-24。基于这些上限,并假设主惯性矩的基准值为1038 kg m2,我们可以排除椭圆率大于大约2.8×10-7的对象(在100 pc的地球中),其旋转周期在1.3到1.6毫秒之间。

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