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Towards an optimal marked correlation function analysis for the detection of modified gravity

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arxiv 2406.02504 v1 pith:LZQG35Q2 submitted 2024-06-04 astro-ph.CO

classification astro-ph.CO
keywords correlationmarkedfunctionhigh-densitydetectioneffectsgravitymarks
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abstract

Modified gravity (MG) theories have emerged as a promising alternative to explain the late-time acceleration of the Universe. However, the detection of MG in observations of the large-scale structure remains challenging due to the screening mechanisms that obscure any deviations from General Relativity (GR) in high-density regions. The marked two-point correlation function offers a promising approach to potentially detect MG signals. This work investigates novel marks based on large-scale environment estimates but also that exploit the anti-correlation between objects in low- and high-density regions. This is the first time discreteness effects in density-dependent marked correlation functions are investigated in depth. We assess the performance of various marks to distinguish GR from MG by using the ELEPHANT simulations, comprised of realisations of GR as well as $f(R)$ and nDGP gravity. In addition, discreteness effects are studied using the high-density Covmos catalogues. We establish a robust method to correct for shot-noise effects that allows the recovery of the true signal with an accuracy below $5\%$ over a wide range of scales. We find such correction to be crucial to measure the amplitude of the marked correlation function in an unbiased manner. Furthermore, we demonstrate that marks, anti-correlating objects in low- and high-density regions, are among the most effective in distinguishing between MG and GR. We report differences in the marked correlation function between $f(R)$ with $|f_{R0}|=10^{-6}$ and GR simulations of the order of 3-5$\sigma$ in real space up to scales of about $80\, h^{-1} \, {\rm Mpc}$. The redshift-space monopole exhibits similar features and performances. The combination of the proposed $\tanh$-mark with shot-noise correction paves the way towards an optimal approach for the detection of MG in current and future galaxy spectroscopic surveys.

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Cited by 4 Pith papers

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

  1. First Constraints from Marked Angular Power Spectra with Subaru Hyper Suprime-Cam Survey First-Year Data

    astro-ph.CO 2025-07 conditional novelty 7.0 of 10

    Marked angular power spectra applied to HSC-Y1 weak lensing data yield S8 = 0.807 ± 0.024, about 43 percent tighter than standard power spectra.

  2. Weighted Webs: Morphology-Informed Marked Fields

    astro-ph.CO 2026-07 conditional novelty 6.0 of 10

    Morphology-based marks (tidal shear and local fractal dimension) add a modest but complementary ~10% Fisher-information gain over density-only marked power spectra for cosmological parameters.

  3. Comparing the Spatial Correlation of Binary Black Hole Mergers to Large-Scale Structure through the Illustris Simulation

    astro-ph.CO 2025-07 conditional novelty 6.0 of 10

    Simulated massive black hole mergers trace large-scale structure with a nearly scale-independent clustering bias relative to galaxies, offering a possible LISA-based probe of cosmic structure.

  4. Modeling the HI-Halo Connection: Evolution, Scatter, and a Halo-based Prescription for 21-cm Mock Catalogs

    astro-ph.CO 2026-07 accept novelty 5.0 of 10

    A prescription fitted to GAEA2023 reproduces the median HI-halo mass relation and its scatter using halo spin and concentration, enabling realistic 21-cm mock catalogs.

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