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A Possible Cold Imprint of Voids on the Microwave Background Radiation

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arxiv 1301.6136 v4 pith:LPOGMOGD submitted 2013-01-25 astro-ph.CO

A Possible Cold Imprint of Voids on the Microwave Background Radiation

classification astro-ph.CO
keywords voidsfindimprintradiussignalbackgroundcoldeffect
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We measure the average temperature decrement on the cosmic microwave background (CMB) produced by voids selected in the SDSS DR7 spectroscopic redshift galaxy catalog, spanning redshifts $0<z<0.44$. We find an imprint of amplitude between 2.6 and 2.9$\mu K$ as viewed through a compensated top-hat filter scaled to the radius of each void; we assess the statistical significance of the imprint at ~2$\sigma$. We make crucial use of $N$-body simulations to calibrate our analysis. As expected, we find that large voids produce cold spots on the CMB through the Integrated Sachs-Wolfe (ISW) effect. However, we also find that small voids in the halo density field produce hot spots, because they reside in contracting, larger-scale overdense regions. This is an important effect to consider when stacking CMB imprints from voids of different radius. We have found that the same filter radius that gives the largest ISW signal in simulations also yields close to the largest detected signal in the observations. However, although it is low in significance, our measured signal is much higher-amplitude than expected from ISW in the concordance $\Lambda$CDM universe. The discrepancy is also at the ~2$\sigma$ level. We have demonstrated that our result is robust against the varying of thresholds over a wide range.

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Cited by 1 Pith paper

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  1. Cosmic voids evolution in modified gravity via hydrodynamics

    astro-ph.CO 2026-02 conditional novelty 6.0

    Voids in luminal Galileon gravity are always unscreened, and a reality requirement on the fifth force rules out ~82% of the favored parameter space, yielding a redshift-dependent minimum void depth.