论文标题

天气时间延迟干涉法中的等离子体噪声

Plasma noise in TianQin time delay interferometry

论文作者

Jing, Yi-De, Zheng, Lu, Yang, Shutao, Zhang, Xuefeng, Lu, Lingfeng, Tang, Binbin, Su, Wei

论文摘要

天气是一种提出的地理基于空间的引力波动台任务,它需要时间延迟干涉法(TDI)来取消激光频率噪声。在$ \ sim 10^5 $ km处的精确性,太阳风等离子体环境可能构成卫星之间的激光干涉测量值的不可忽略的噪声源,因为带电的颗粒将沿光路径的折射率呈现。在本文中,我们首先评估了空间天气模型和数值轨道的单个链接的血浆噪声,并分析时间和频域特征。特别是,要捕获$ 10^{ - 4} -1 $ Hz的整个测量带中的等离子体噪声,我们在更精细的空间和时间分辨率中进行了额外的空间含量磁流失动力学模拟,并利用了高频数据生成的Kolmogorov光谱。然后,我们评估第一代和第二代TDI组合的残留等离子体噪声。分析和数值估计都表明,在正常太阳条件下,TDI后的血浆噪声小于次级噪声要求。此外,与TDI前后的次级噪声相比,由于不同臂之间的噪声相关性,TDI在$ \ sim 10^{-2} $ Hz以下的血浆噪声上表现出适度的抑制。

TianQin is a proposed geocentric space-based gravitational wave observatory mission, which requires time-delay interferometry (TDI) to cancel laser frequency noise. With high demands for precision, solar-wind plasma environment at $\sim 10^5$ km above the Earth may constitute a non-negligible noise source to laser interferometric measurements between satellites, as charged particles perturb the refractivity along light paths. In this paper, we first assess the plasma noises along single links from space-weather models and numerical orbits, and analyze the time and frequency domain characteristics. Particularly, to capture the plasma noise in the entire measurement band of $10^{-4} - 1$ Hz, we have performed additional space-weather magnetohydrodynamic simulations in finer spatial and temporal resolutions and utilized Kolmogorov spectra in high-frequency data generation. Then we evaluate the residual plasma noises of the first- and second-generation TDI combinations. Both analytical and numerical estimations have shown that under normal solar conditions the plasma noise after TDI is less than the secondary noise requirement. Moreover, TDI is shown to exhibit moderate suppression on the plasma noise below $\sim 10^{-2}$ Hz due to noise correlation between different arms, when compared with the secondary noise before and after TDI.

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