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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Detecting relic gravitational waves in the CMB: Comparison of Planck and ground-based experiments
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Detecting relic gravitational waves in the CMB: Comparison of Planck and ground-based experiments

机译:在CMB中检测文物引力波:普朗克与地面实验的比较

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We compare the detection abilities for the relic gravitational waves by two kinds of forthcoming cosmic microwave background radiation (CMB) experiments, space-based Planck satellite and the various ground-based experiments. Comparing with the ground-based experiments, Planck satellite can observe all the CMB power spectra in all the multipole range, but having much larger instrumental noises. We find that, for the uncertainty of the tensor-to-scalar ratio Ar, PolarBear (II) as a typical ground-based experiment can give much smaller value than Planck satellite. However, for the uncertainty of the spectral index Ant, Planck can give the similar result with PolarBear (II). If combining these two experiments, the value of Δn_t can be reduced by a factor 2. For the model with r = 0.1, the constraint Δn_t = 0.10 is expected to be achieved, which provides an excellent opportunity to study the physics in the inflationary universe. We also find the observation in the largest scale (l < 20) is very important for constraining the spectral index nt. So it is necessary to combine the observations of the future space-based and ground-based CMB experiments to determine the relic gravitational waves.
机译:我们通过两种即将到来的宇宙微波背景辐射(CMB)实验,天基普朗克卫星实验和各种地面实验对文物引力波的检测能力进行了比较。与基于地面的实验相比,普朗克卫星可以观测到所有多极范围内的所有CMB功率谱,但具有更大的仪器噪声。我们发现,由于张量与标量比Ar的不确定性,作为典型的地面实验,PolarBear(II)给出的值比普朗克卫星小得多。但是,对于光谱指数Ant的不确定性,Planck可以使用PolarBear(II)得出相似的结果。如果将这两个实验结合起来,则可以将Δn_t的值减小2倍。对于r = 0.1的模型,有望实现约束Δn_t= 0.10,这为研究膨胀宇宙中的物理学提供了极好的机会。我们还发现,在最大尺度上观察(l <20)对于约束光谱指数nt非常重要。因此,有必要将未来基于空间和地面的CMB实验的观测结果结合起来,以确定文物引力波。

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