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Precise Measurement of the Radial Baryon Acoustic Oscillation Scales in Galaxy Redshift Surveys

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arxiv 1210.6446 v2 pith:LIEXBR2X submitted 2012-10-24 astro-ph.CO gr-qc

classification astro-ph.COgr-qc
keywords radialacousticbaryoncosmologicalgalaxymethodscalesurveys
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In this paper we present a new method to extract cosmological parameters using the radial scale of the Baryon Acoustic Oscillations as a standard ruler in deep galaxy surveys. The method consists in an empirical parametrization of the radial 2-point correlation function, which provides a robust and precise extraction of the sound horizon scale. Moreover, it uses data from galaxy surveys in a manner that is fully cosmology independent and therefore, unbiased. A study of the main systematic errors and the validation of the method in cosmological simulations are also presented, showing that the measurement is limited only by cosmic variance. We then study the full information contained in the Baryon Acoustic Oscillations, obtaining that the combination of the radial and angular determinations of this scale is a very sensitive probe of cosmological parameters, able to set strong constraints on the dark energy properties, even without combining it with any other probe.

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Cited by 2 Pith papers

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    Survey-averaged Alcock-Paczynski parameters recover the BAO scale more accurately than single-redshift parameters in models with strong metric gradients, and a ~1% systematic remains that no constant AP scaling can remove.

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    astro-ph.CO 2026-05 unverdicted novelty 5.0 of 10

    Gaia quasar proper motions show a significant quadrupole signal matching an axisymmetric Bianchi I anisotropy model, but the amplitude does not increase with redshift as the model requires and the inferred local shear...

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