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广义相对论与量子宇宙学

arXiv:0905.1705 (gr-qc)
[提交于 2009年5月11日 ]

标题: Einstein@Home在早期S5 LIGO数据中搜索周期性引力波

标题: Einstein@Home search for periodic gravitational waves in early S5 LIGO data

Authors:LIGO Scientific Collaboration
摘要: This paper reports on an all-sky search for periodic gravitational waves from sources such as deformed isolated rapidly-spinning neutron stars. The analysis uses 840 hours of data from 66 days of the fifth LIGO science run (S5). The data was searched for quasi-monochromatic waves with frequencies f in the range from 50 Hz to 1500 Hz, with a linear frequency drift \dot{f} (measured at the solar system barycenter) in the range -f/\tau < \dot{f} < 0.1 f/\tau , for a minimum spin-down age \tau of 1000 years for signals below 400 Hz and 8000 years above 400 Hz. The main computational work of the search was distributed over approximately 100000 computers volunteered by the general public. This large computing power allowed the use of a relatively long coherent integration time of 30 hours while searching a large parameter space. This search extends Einstein@Home's previous search in LIGO S4 data to about three times better sensitivity. No statistically significant signals were found. In the 125 Hz to 225 Hz band, more than 90% of sources with dimensionless gravitational-wave strain tensor amplitude greater than 3e-24 would have been detected.
摘要: This paper reports on an all-sky search for periodic gravitational waves from sources such as deformed isolated rapidly-spinning neutron stars. The analysis uses 840 hours of data from 66 days of the fifth LIGO science run (S5). The data was searched for quasi-monochromatic waves with frequencies f in the range from 50 Hz to 1500 Hz, with a linear frequency drift \dot{f} (measured at the solar system barycenter) in the range -f/\tau < \dot{f} < 0.1 f/\tau, for a minimum spin-down age \tau of 1000 years for signals below 400 Hz and 8000 years above 400 Hz. The main computational work of the search was distributed over approximately 100000 computers volunteered by the general public. This large computing power allowed the use of a relatively long coherent integration time of 30 hours while searching a large parameter space. This search extends Einstein@Home's previous search in LIGO S4 data to about three times better sensitivity. No statistically significant signals were found. In the 125 Hz to 225 Hz band, more than 90% of sources with dimensionless gravitational-wave strain tensor amplitude greater than 3e-24 would have been detected.
评论: 14页,7图
主题: 广义相对论与量子宇宙学 (gr-qc)
引用方式: arXiv:0905.1705 [gr-qc]
  (或者 arXiv:0905.1705v1 [gr-qc] 对于此版本)
  https://doi.org/10.48550/arXiv.0905.1705
通过 DataCite 发表的 arXiv DOI
期刊参考: LIGO-P0900032-v3
相关 DOI: https://doi.org/10.1103/PhysRevD.80.042003
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来自: Holger Pletsch [查看电子邮件]
[v1] 星期一, 2009 年 5 月 11 日 20:28:58 UTC (1,091 KB)
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