论文标题

Lisa-Taiji联合观察的天空定位的数值模拟

Numerical simulation of sky localization for LISA-TAIJI joint observation

论文作者

Wang, Gang, Ni, Wei-Tou, Han, Wen-Biao, Yang, Shu-Cheng, Zhong, Xing-Yu

论文摘要

丽莎被认为是与雅典娜一起推出的,以探究能量的天体物理过程。丽莎可以确定雅典娜的后续观察来源的方向。作为另一个太空引力浪潮任务,预计太极拳将于2030年代推出。 Lisa-taiji网络将为来源理解提供丰富的优点。在这项工作中,我们模拟了与超级质量黑洞二进制二进制和单色源相结合的重力波的关节丽莎 - 泰吉观测。通过使用数值轨道,我们评估了各种时间延迟干涉量通道的天空定位性能。在30天的观察之前,直到结合,最佳操作中的Lisa-Taiji网络可以定位所有模拟的二进制来源,$(10^7,\ 3.3 \ times 10^6)\ m_ \ m_ \ odot $,$(10^6,\ 3.3 \ 3.3 \ times 10^5) $ z = 2 $,以0.4度$^2 $(雅典娜(Athena)上的宽野外成像器视野)。与在给定百分比的人口百分比相比,与Lisa或Taiji单探测器相比,角度分辨率可以改善10倍以上。在3 MHz和10 MHz的单色源的改进相对一年的观察结果相对适度。与给定百分比的单个丽莎相比,与单个LISA相比,天空定位的精度可以提高约1至3倍。对于单色波的模拟90天观察,Lisa-Taiji网络仍然代表了相当大的定位优势,可能要好得多10倍以上。

LISA is considered to be launched alongside the Athena to probe the energetic astrophysical processes. LISA can determine the direction of sources for Athena's follow-up observation. As another space gravitational wave mission, TAIJI is expected to be launched in the 2030s. The LISA-TAIJI network would provide abundant merits for sources understanding. In this work, we simulate the joint LISA-TAIJI observations for gravitational waves from coalescing supermassive black hole binaries and monochromatic sources. By using the numerical mission orbits, we evaluate the performances of sky localization for various time-delay interferometry channels. For 30 days observation until coalescence, the LISA-TAIJI network in optimal operation can localize all simulated binary sources, $(10^7,\ 3.3 \times 10^6)\ M_\odot$, $(10^6,\ 3.3 \times 10^5)\ M_\odot$ and $(10^5,\ 3.3 \times 10^4)\ M_\odot$ at redshift $z=2$, in 0.4 deg$^2$ (field of view of Wide Field Imager on Athena). The angular resolution can be improved by more than 10 times comparing to LISA or TAIJI single detector at a given percentage of population. The improvements for monochromatic sources at 3 mHz and 10 mHz are relatively moderate in one-year observation. The precision of sky localization could be improved by around 1 to 3 times comparing to single LISA at a given percentage of sources. For a simulated 90 days observation for monochromatic waves, the LISA-TAIJI network still represents a considerable localization advantage which could be more than 10 times better.

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