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Small-scale CMB anisotropies induced by the primordial magnetic fields

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arxiv 2012.12542 v2 pith:ZC4DIFCX submitted 2020-12-23 astro-ph.CO

Small-scale CMB anisotropies induced by the primordial magnetic fields

classification astro-ph.CO
keywords anisotropiespmfsplanckconstraintfieldsmagneticcosmicdata
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The primordial magnetic fields (PMFs) produced in the early universe are expected to be the origin of the large-scale cosmic magnetic fields. The PMFs are considered to leave a footprint on the cosmic microwave background (CMB) anisotropies due to both the electromagnetic force and gravitational interaction. In this paper, we investigate how the PMFs affect the CMB anisotropies on smaller scales than the mean-free-path of the CMB photons. We solve the baryon Euler equation with Lorentz force due to the PMFs, and we show that the vector-type perturbations from the PMFs induce the CMB anisotropies below the Silk scale as $\ell>3000$. Based on our calculations, we put a constraint on the PMFs from the combined CMB temperature anisotropies obtained by Planck and South Pole Telescope (SPT). We have found that the highly-resolved temperature anisotropies of the SPT 2017 bandpowers at $\ell \lesssim 8000$ favor the PMF model with a small scale-dependence. As a result, the Planck and SPT's joint-analysis puts a constraint on the PMF spectral index as $n_B<-1.14$ at 95% confidence level (C.L.), and this is more stringent compared with the Planck-only constraint $n_B<-0.28$. We show that the PMF strength normalized on the co-moving 1 Mpc scale is also tightly constrained as $B_{1\mathrm{Mpc}}<1.5$ nG with Planck and SPT at 95% C.L., while $B_{1\mathrm{Mpc}}<3.2$ nG only with the Planck data at 95% C.L. We also discuss the effects on the cosmological parameter estimate when including the SPT data and CMB anisotropies induced by the PMFs.

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Cited by 2 Pith papers

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  1. The Status of Gravitational Vector Perturbations with Recent CMB Data

    astro-ph.CO 2026-05 unverdicted novelty 4.0

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  2. On the contribution of galaxies to the magnetic field in cosmic voids

    astro-ph.CO 2025-10 unverdicted novelty 4.0

    Superposition of static galactic magnetic dipoles is screened by intergalactic plasma and cannot account for lower bounds on magnetic fields in cosmic voids from blazar gamma-ray data.