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首页> 外文期刊>The Astrophysical journal >CAN THE LASER INTERFEROMETER SPACE ANTENNA RESOLVE THE DISTANCE TO THE LARGE MAGELLANIC CLOUD?
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CAN THE LASER INTERFEROMETER SPACE ANTENNA RESOLVE THE DISTANCE TO THE LARGE MAGELLANIC CLOUD?

机译:激光干涉仪空间天线能否解决与大型麦哲伦云之间的距离?

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摘要

The Laser Interferometer Space Antenna (LISA) is expected to detect N ~ 22 x 10~(+-1) close white dwarf binaries in the Large Magellanic Cloud (LMC) through their gravitational radiation with signal-to-noise ratios greater than ~10 in observational durations of 3 yr or more. In addition to chirp mass, location on the sky, and other binary parameters, the distance to each binary is an independent parameter that can be extracted from an analysis of gravitational waves from these binaries. Using a sample of binaries, one can establish the mean distance to the LMC as well as the variance of this distance. Assuming no confusion noise at frequencies above 2 mHz, for data collected over 10 yr, LISA might determine the LMC distance to ~4.5(N/22)~(1/2)(1 yr/T_(obs))~(1/2) and the line-of-sight extent of the LMC to ~15(N/22)~(1/4)%, relative to its distance, at the 1 σ confidence. For a 3 yr observational window, these estimates are degraded by a factor of ~2.5. In general, the estimates based on LISA are competitive with some of the proposed direct geometric techniques of measuring the LMC distance in the future with missions such as the Space Interferometry Mission and the Global Astrometric Interferometer for Astrophysics.
机译:预期激光干涉仪空间天线(LISA)会通过引力辐射检测大麦哲伦星云(LMC)中的N〜22 x 10〜(+-1)个密闭白矮星,信噪比大于〜10观察期为3年或更长时间。除了chi声质量,在天空中的位置和其他二进制参数外,到每个二进制文件的距离都是一个独立的参数,可以从这些二进制文件的引力波分析中提取出来。使用二进制样本,可以确定到LMC的平均距离以及该距离的方差。假设在2 mHz以上的频率上没有混淆噪声,对于10年以上收集的数据,LISA可能会确定LMC的距离约为〜4.5(N / 22)〜(1/2)(1 yr / T_(obs))〜(1 / 2),并且LMC的视线范围相对于其距离为〜15(N / 22)〜(1/4)%,置信度为1σ。对于3年的观察窗,这些估计值降低了约2.5倍。一般而言,基于LISA的估计值与某些建议的直接几何技术(未来将通过空间干涉测量任务和全球天体物理干涉测量任务)测量LMC距离相竞争。

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