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Prospects for Observing and Localizing Gravitational-Wave Transients with Advanced LIGO and Advanced Virgo

机译:用高级LIGO和高级处女座观测和定位引力波瞬态的前景

摘要

We present a possible observing scenario for the Advanced LIGO and Advanced Virgo gravitational-wave detectors over the next decade, with the intention of providing information to the astronomy community to facilitate planning for multi-messenger astronomy with gravitational waves. We determine the expected sensitivity of the network to transient gravitational-wave signals, and study the capability of the network to determine the sky location of the source. We report our findings for gravitational-wave transients, with particular focus on gravitational-wave signals from the inspiral of binary neutron-star systems, which are considered the most promising for multi-messenger astronomy. The ability to localize the sources of the detected signals depends on the geographical distribution of the detectors and their relative sensitivity, and 90% credible regions can be as large as thousands of square degrees when only two sensitive detectors are operational. Determining the sky position of a significant fraction of detected signals to areas of 5 deg^2 to 20 deg^2 will require at least three detectors of sensitivity within a factor of ∼ 2 of each other and with a broad frequency bandwidth. Should the third LIGO detector be relocated to India as expected, a significant fraction of gravitational-wave signals will be localized to a few square degrees by gravitational-wave observations alone.
机译:我们为未来十年的LIGO和Advanced Virgo引力波探测器提出了一种可能的观测方案,目的是向天文学界提供信息,以促进利用引力波计划多信使天文学。我们确定网络对瞬态重力波信号的预期灵敏度,并研究网络确定震源天空位置的能力。我们报告了关于引力波瞬变的发现,特别关注来自双星中子星系统灵感的引力波信号,这被认为是多信使天文学最有希望的。定位检测到的信号源的能力取决于检测器的地理分布及其相对灵敏度,而只有两个敏感的检测器在工作时,90%的可信区域可能高达数千平方度。确定大部分检测信号到达5 deg ^ 2到20 deg ^ 2区域的天空位置,将需要至少三个灵敏度在彼此之间大约为2的因子且具有较宽频率带宽的检测器。如果将第三台LIGO探测器按预期的方式移至印度,则仅靠重力波观测就可以将相当大一部分的重力波信号定位到几平方度。

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