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Weighing the Universe with the Cosmic Microwave Background

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arxiv astro-ph/9507080 v1 pith:YUMJSVAD submitted 1995-07-21 astro-ph hep-ph

classification astro-phhep-ph
keywords cosmologicalomegaotherparametersbackgroundcosmicdensitymicrowave
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abstract

Variations in $\Omega$, the total density of the Universe, leave a clear and distinctive imprint on the power spectrum of temperature fluctuations in the cosmic microwave background (CMB). This signature is virtually independent of other cosmological parameters or details of particular cosmological models. We evaluate the precision with which $\Omega$ can be determined by a CMB map as a function of sky coverage, pixel noise, and beam size. For example, assuming only that the primordial density perturbations were adiabatic and with no prior information on the values of any other cosmological parameters, a full-sky CMB map at $0.5^\circ$ angular resolution and a noise level of $15\,\mu{\rm K}$ per pixel can determine $\Omega$ with a variance of 5\%. If all other cosmological parameters are fixed, $\Omega$ can be measured to better than 1\%.

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  1. Gravitational waves, CMB polarization, and the Hubble tension

    astro-ph.CO 2019-08 conditional novelty 6.0 of 10

    The B-mode recombination peak, tied to the light horizon at last scattering, can act as an independent early-universe standard ruler, measurable to about 2% with stage-IV CMB experiments.

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