2017•Physical review. D/Physical review. D.Open access

Improved model of redshift-space distortions around voids: Application to quintessence dark energy

Ixandra Achitouv

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Abstract

Using cosmic voids to probe the growth rate of cosmic structure, and hence the nature of dark energy, is particularly interesting in the context of modified gravity theories that rely on the ``screening mechanism.'' In this work we improve the modelling of redshift-space distortions around voids in the dark matter density field, and thus reduce systematic errors in the derivation of cosmological parameters. We also show how specific types of voids can be used to better probe the growth rate, using a flexible void finder. We apply our results to test for a ``quintessence'' type of dark energy vs. a $\mathrm{\ensuremath{\Lambda}}\mathrm{CDM}$ model, and find a good agreement with the fiducial cosmology after implementing an analytical correction to the radial velocity profiles around voids. We additionally outline characteristic imprints of dark energy in the dark matter velocity distributions around voids.

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Using cosmic voids to probe the growth rate of cosmic structure, and hence the nature of dark energy, is particularly interesting in the context of modified gravity theories that rely on the ``screening mechanism.'' In this work we improve the modelling of redshift-space distortions around voids in the dark matter density field, and thus reduce systematic errors in the derivation of cosmological parameters. We also show how specific types of voids can be used to better probe the growth rate, using a flexible void finder. We apply our results to test for a ``quintessence'' type of dark energy vs. a $\mathrm{\ensuremath{\Lambda}}\mathrm{CDM}$ model, and find a good agreement with the fiducial cosmology after implementing an analytical correction to the radial velocity profiles around voids. We additionally outline characteristic imprints of dark energy in the dark matter velocity distributions around voids.

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Available abstract

Using cosmic voids to probe the growth rate of cosmic structure, and hence the nature of dark energy, is particularly interesting in the context of modified gravity theories that rely on the ``screening mechanism.'' In this work we improve the modelling of redshift-space distortions around voids in the dark matter density field, and thus reduce systematic errors in the derivation of cosmological parameters. We also show how specific types of voids can be used to better probe the growth rate, using a flexible void finder. We apply our results to test for a ``quintessence'' type of dark energy vs. a $\mathrm{\ensuremath{\Lambda}}\mathrm{CDM}$ model, and find a good agreement with the fiducial cosmology after implementing an analytical correction to the radial velocity profiles around voids. We additionally outline characteristic imprints of dark energy in the dark matter velocity distributions around voids.

Key concepts: Quintessence, Dark energy, Physics, Redshift, Void (composites), Dark fluid, Astrophysics, Dark matter

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