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Matter effects on LIGO/Virgo searches for gravitational waves from merging neutron stars

机译:来自合并中子恒星的Ligo / Virgo搜索的物质效果

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Gravitational waves from merging neutron stars are expected to be observed in the next five years. We explore the potential impact of matter effects on gravitational waves from merging double neutron-star binaries. If neutron star binaries exist with chirp masses less than roughly one solar mass and typical neutron-star radii are larger than roughly 14 km, or if neutron-star radii are larger than 15-16 km for the chirp masses of galactic neutron-star binaries, then matter will have a significant impact on the effectiveness of a point-particle-based search at Advanced LIGO design sensitivity (roughly 5% additional loss of signals). In a configuration typical of LIGO's first observing run, extreme matter effects lead to up to 10% potential loss in the most extreme cases.
机译:预计未来五年将观察来自合并中子恒星的引力波。 我们探讨了物质影响对来自融合双中子星二进制二进制杂化的引力波的潜在影响。 如果中子星二进制文件的啁啾块小于大约一个太阳能质量和典型的中子星半径大于大约14公里,或者中子星半径大于15-16公里,对于银河系中的半乳液中子 - 星二进制二进制文件 然后,物质对先进的LIGO设计灵敏度(大约5%的信号丢失)有重大影响。 在典型的Ligo首次观察运行的配置中,极端物质效果在最极端情况下导致高达10%的潜在损失。

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