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Multitracing Anisotropic Non-Gaussianity with Galaxy Shapes

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arxiv 1607.05232 v2 pith:XVB5WU4J submitted 2016-07-18 astro-ph.CO astro-ph.GA

classification astro-ph.COastro-ph.GA
keywords anisotropicnon-gaussianitygalaxyshapesalignmentsanalysisconstraintsimprovement
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abstract

Correlations between intrinsic galaxy shapes on large-scales arise due to the effect of the tidal field of the large-scale structure. Anisotropic primordial non-Gaussianity induces a distinct scale-dependent imprint in these tidal alignments on large scales. Motivated by the observational finding that the alignment strength of luminous red galaxies depends on how galaxy shapes are measured, we study the use of two different shape estimators as a multi-tracer probe of intrinsic alignments. We show, by means of a Fisher analysis, that this technique promises a significant improvement on anisotropic non-Gaussianity constraints over a single-tracer method. For future weak lensing surveys, the uncertainty in the anisotropic non-Gaussianity parameter, $A_2$, is forecast to be $\sigma(A_2)\approx 50$, $\sim 40\%$ smaller than currently available constraints from the bispectrum of the Cosmic Microwave Background. This corresponds to an improvement of a factor of $4-5$ over the uncertainty from a single-tracer analysis.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Improving cosmological constraints via galaxy intrinsic alignment in full-shape analysis

    astro-ph.CO 2024-12 conditional novelty 5.0 of 10

    A Fisher forecast shows that adding full-shape intrinsic alignment information to galaxy clustering tightens cosmological constraints, particularly for dark energy and non-flat modified-gravity models.

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