论文标题
相关的地震和相关牛顿噪声对爱因斯坦望远镜的影响
Impact of correlated seismic and correlated Newtonian noise on the Einstein Telescope
论文作者
论文摘要
相关噪声可能会影响对未来基于地球的重力波检测器的重力波背景的搜索。由于爱因斯坦望远镜的不同干涉仪之间的距离很小($ \ sim $ 400 m),因此相关的地震噪声可能会产生重大影响。在此范围内,我们研究了地震仪和地震仪和地球仪之间的地震相关性,在0.05 Hz -50 Hz的频率范围内,地震仪和地震仪之间的地震相关性。基于这些相关的地震场,我们预测了相关的牛顿噪声(NN)的水平。我们在允许的地震耦合函数上构建上限,以使相关的地震噪声不会影响寻找各向同性引力波背景的搜索。假设位于表面以下300 m的设施,发现从瑞利波中寻找相关NN的重力波背景的影响是有问题的,高达$ \ sim $ 5 Hz。但是,体波的NN构成了对引力波背景的搜索的严重威胁。体波的相关NN可能比计划的灵敏度高出$ \ sim $ 3 Hz高出五到七个数量级,并且可能阻碍对40 Hz低于40 Hz的重力波背景的任何搜索。通过在每个干涉仪中通过NN取消的NN减少的因子10,NN对随机搜索的影响可以消除30 Hz以上。
Correlated noise could impact the search for the gravitational wave background at future Earth-based gravitational-wave detectors. Due to the small distance ($\sim$ 400 m) between the different interferometers of the Einstein Telescope, correlated seismic noise could have a significant effect. To this extent, we study the seismic correlations at the Earth's surface, as well as underground, between seismometers and geophones separated by several hundreds of meters, in the frequency range 0.05 Hz - 50 Hz. Based on these correlated seismic fields we predict the levels of correlated Newtonian noise (NN). We construct upper limits on the allowed seismic coupling function such that correlated seismic noise does not affect the search for an isotropic gravitational wave background. Assuming a facility located 300 m below the surface, the impact on the search for a gravitational wave background of correlated NN from Rayleigh waves are found to be problematic up to $\sim$ 5 Hz. The NN from body waves, however, constitutes a serious threat to the search of a gravitational wave background. Correlated NN from body waves could be up to five to seven orders of magnitude above the planned sensitivity at $\sim$ 3 Hz and it could impede any search for a gravitational wave background below 40 Hz. With a factor 10 of NN reduction via NN cancellation in each interferometer, the effects of the NN on the stochastic search could be eliminated above 30 Hz.