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Optimistic estimation on probing primordial gravitational waves with CMB B-mode polarization

Published 22 Jan 2017 in astro-ph.CO and gr-qc | (1701.06115v2)

Abstract: In the measurements of cosmic microwave background polarizations, three frequency channels are necessary for discriminating the primordial B-modes from the polarized dust and the synchrotron emission. We carry out an optimistic estimate on the sensitivity to the detection of primordial gravitational waves using the cosmic microwave background B-modes only, and explore how to reach the thresholds for the tensor-to-scalar ratio rr in the theoretically well-motivated inflation models. For example, Lyth bound implies r≃2×10<sup>−3r \simeq 2\times10<sup>{-3}, a corrected Lyth bound shows r≃7×10<sup>−4r \simeq 7\times10<sup>{-4}, and some typical inflation models gives r≃4×10<sup>−5r\simeq4\times10<sup>{-5}. Taking into account the up-to-date constraints on rr, i.e. $r_{0.05}&lt;0.07$ at 95%95\% confidence, we find that the consistency relation nt=−r/8n_t=-r/8 in the canonical single-field slow-roll inflation cannot be distinguished from the scale invariance, due to the cosmic variance in the power spectrum of cosmic microwave background B-modes. The cosmic variance places an inevitable limit on the measurements of the tensor spectral index, i.e. σnt≃0.01\sigma_{n_t}\simeq0.01 for 2⩽ℓ⩽ℓmax=3002\leqslant\ell\leqslant \ell_\text{max}=300.

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