...
首页> 外文期刊>Living Reviews in Relativity >Prospects for observing and localizing gravitational-wave transients with Advanced LIGO, Advanced Virgo and KAGRA
【24h】

Prospects for observing and localizing gravitational-wave transients with Advanced LIGO, Advanced Virgo and KAGRA

机译:具有高级利焦,高级处女座和Kagra的高级引力波瞬态的前景

获取原文
           

摘要

We present our current best estimate of the plausible observing scenarios for the Advanced LIGO, Advanced Virgo and KAGRA gravitational-wave detectors over the next several years, with the intention of providing information to facilitate planning for multi-messenger astronomy with gravitational waves. We estimate the sensitivity of the network to transient gravitational-wave signals for the third (O3), fourth (O4) and fifth observing (O5) runs, including the planned upgrades of the Advanced LIGO and Advanced Virgo detectors. We study the capability of the network to determine the sky location of the source for gravitational-wave signals from the inspiral of binary systems of compact objects, that is binary neutron star, neutron star black hole, and binary black hole systems. The ability to localize the sources is given as a sky-area probability, luminosity distance, and comoving volume. The median sky localization area (90% credible region) is expected to be a few hundreds of square degrees for all types of binary systems during O3 with the Advanced LIGO and Virgo (HLV) network. The median sky localization area will improve to a few tens of square degrees during O4 with the Advanced LIGO, Virgo, and KAGRA (HLVK) network. During O3, the median localization volume (90% credible region) is expected to be on the order of $$10^{5}, 10^{6}, 10^{7}mathrm { Mpc}^3$$ for binary neutron star, neutron star black hole, and binary black hole systems, respectively. The localization volume in O4 is expected to be about a factor two smaller than in O3. We predict a detection count of $$1^{+12}_{-1}$$ ( $$10^{+52}_{-10}$$ ) for binary neutron star mergers, of $$0^{+19}_{-0}$$ ( $$1^{+91}_{-1}$$ ) for neutron star black hole mergers, and $$17^{+22}_{-11}$$ ( $$79^{+89}_{-44}$$ ) for binary black hole mergers in a one-calendar-year observing run of the HLV network during O3 (HLVK network during O4). We evaluate sensitivity and localization expectations for unmodeled signal searches, including the search for intermediate mass black hole binary mergers.
机译:我们目前的最佳估计在未来几年内,我们的高级Ligo,高级处女座和Kagra引力波探测器的合理观察方案的最佳估计,目的是提供信息,以便于与引力波的多信使天文规划。我们估计网络对第三(O3),第四(O4)和第五观察(O5)运行的瞬态引力波信号的敏感性,包括先进的Ligo和高级处女座检测器的计划升级。我们研究了网络的能力,以确定来自紧凑型物体的二进制系统的鼓舞波信号的源的天空位置,即二进制中子星,中子星黑洞和二进制黑洞系统。将源定位的能力作为天空区域概率,亮度距离和复制。中位数天地化区域(90%可信地区)预计为O3期间的所有类型二元系统都有几百个平方度,以及高级利极和处女座(HLV)网络。中位数天空定位区域将在O4期间用高级利戈,处女座和Kagra(HLVK)网络在O4期间改善几十平方度。在O3期间,预计中位数定位体积(90%可信地区)将大约在$ 10 ^ {5},10 ^ {6},10 ^ {7} mathrm { mpc} ^ 3 $$二元中子星,中子星黑洞和二进制黑洞系统。 O4中的定位体积预计比O3小于两个小因素。我们预测R $ 0 ^ {+ 19}的二进制中子星形兼并$$ 1 ^ {+ 12} _ { - 1} $$($ 10 ^ {+ 52} _ { - 10} $$)的检测计数。 _ { - 0} $$($ 1 ^ {+ 91} _ { - 1} $$)用于中子星黑洞混合,而$ 17 ^ {+ 22} _ { - 11} $$($ 79 ^ { +89} _ {-44} $$)对于在O3期间HLV网络的一日期观测运行中的二进制黑洞并在O4期间的HLVK网络)中的一个日历。我们评估对未确定信号搜索的灵敏度和本地化期望,包括搜索中间质量黑洞二元合并。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号