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Redshift Distortions of Clustering: A Lagrangian Approach

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arxiv astro-ph/9407049 v1 pith:VOKNJWIO submitted 1994-07-15 astro-ph

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keywords redshiftclusteringcosmologicaldensityeffectslagrangianmodelomega
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We study the effects of peculiar velocities on statistical measures of galaxy clustering. These effects occur when distances to the galaxies are estimated from their redshifts. It is assumed that the clustering pattern results from the gravitational instability of initially Gaussian, small-amplitude perturbations of a Friedman-Lemaitre cosmological model. Explicit expressions are given for an arbitrary density parameter \Omega of the model, both when the cosmological constant, \Lambda, is zero, and when the model is spatially flat, \Omega + \Lambda/3H^2 =1. We show how to compute the skewness, or third moment of the density field, in redshift space, and its Fourier space counterpart, the bispectrum. We rely on a perturbative expansion of particle trajectories in Lagrangian coordinates. This formalism extends to higher orders the Zel'dovich first order solution (1970). We show that a physically consistent and quantitatively accurate analysis of the growth skewness in redshift space can be obtained from second-order Lagrangian theory. We also study the effects of spatial smoothing of the evolved density field. We give analytic expressions for the gravitationally induced skewness as a function of the power spectrum and of \Omega, for a spherical top-hat and a Gaussian smoothing filter. We compare our analytical predictions with measurements performed in numerical simulations, and find good agreement. These results should then prove useful in analyzing large scale redshift surveys. In particular, our results, in conjunction with the recent suggestion of Fry (1994), may help to break the coupling between the bias and the cosmological

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 22 citations worldwide. Full citation record

  1. Measuring the redshift-space distortions by cross-correlating the density fields before and after reconstruction

    astro-ph.CO 2025-02 conditional novelty 6.0 of 10

    A one-loop perturbation theory model for the cross-power spectrum of pre- and post-reconstructed density fields recovers the cosmic growth rate from N-body simulations up to k = 0.29 h/Mpc for smoothing scales Rs = 15...

  2. Biased tracers, Hybrid Effective Field Theory and Modified Gravity

    astro-ph.CO 2026-06 unverdicted novelty 5.0 of 10

    Extends HEFT to f(R) gravity for loop-corrected biased power spectra and outlines emulator extensions from LambdaCDM codes.

  3. Euclid preparation: Testing multi-field inflation with galaxy power spectrum and bispectrum

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

    Validates redshift-space power spectrum and bispectrum analysis on Abacus-PNG mocks to recover unbiased f_NL constraints for Euclid spectroscopic sample.

  4. Galaxy and halo angular clustering in LCDM and Modified Gravity cosmologies

    astro-ph.CO 2022-04 unverdicted novelty 4.0 of 10

    N-body light-cone mocks show 2-4 sigma deviations in third-order angular clustering between LCDM and f(R)/nDGP models at z=0.15-0.3 for halos and galaxies, with stronger signals in the dark-matter field.

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