Limits on statistical anisotropy from BOSS DR12 galaxies using bipolar spherical harmonics
arXiv:1704.02868 · doi:10.1093/mnras/stx2333
Abstract
We measure statistically anisotropic signatures imprinted in three-dimensional galaxy clustering using bipolar spherical harmonics (BipoSHs) in both Fourier space and configuration space. We then constrain a well-known quadrupolar anisotropy parameter in the primordial power spectrum, parametrized by , with determining the direction of the anisotropy. Such an anisotropic signal is easily contaminated by artificial asymmetries due to specific survey geometry. We precisely estimate the contaminated signal and finally subtract it from the data. Using the galaxy samples obtained by the Baryon Oscillation Spectroscopic Survey Data Release 12, we find no evidence for violation of statistical isotropy, for all to be of zero within the level. The -type anisotropy can originate from the primordial curvature power spectrum involving a directional-dependent modulation . The bound on is translated into as with a confidence level when is marginalized over.
17 pages, 6 figures, accepted for publication in MNRAS
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