An inflation model with large variations in the spectral index
Bo Feng, Mingzhe Li, Renjie Zhang, Xinmin Zhang
Abstract
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Bo Feng, Mingzhe Li, Renjie Zhang, Xinmin Zhang
Abstract
Open-access reader
Recent fits of cosmological parameters by a Wilkinson Microwave Anisotropy Probe (WMAP) measurement favor a primordial scalar spectrum with a varying index. This result, if it stands, could severely constrain inflation model building. Most extant slow-roll inflation models allow for only a tiny amount of scale variations in the spectrum. We propose in this paper an extra-dimensional inflation model which is natural theoretically and can generate the required variations of the spectral index as implied by the WMAP for suitable choices of parameters.
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Recent fits of cosmological parameters by a Wilkinson Microwave Anisotropy Probe (WMAP) measurement favor a primordial scalar spectrum with a varying index. This result, if it stands, could severely constrain inflation model building. Most extant slow-roll inflation models allow for only a tiny amount of scale variations in the spectrum. We propose in this paper an extra-dimensional inflation model which is natural theoretically and can generate the required variations of the spectral index as implied by the WMAP for suitable choices of parameters.
Key concepts: CMB cold spot, Spectral index, Cosmic microwave background, Inflation (cosmology), Extant taxon, Physics, Index (typography), Spectral density