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The role of LRG1 and LRG2's monopole in inferring the DESI 2024 BAO cosmology

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arxiv 2405.02168 v2 pith:TIU6BEUL submitted 2024-05-03 astro-ph.CO

classification astro-ph.CO
keywords lrg2datalrg1desicosmologysigmadarkenergy
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abstract

The Dark Energy Spectroscopic Instrument (DESI) collaboration recently released its first year of data (DR1) on baryon acoustic oscillations (BAO) in galaxy, quasar, and Lyman-$\alpha$ forest tracers. When combined with CMB and SNIa data, DESI BAO results suggest potential thawing behavior in dark energy. Cosmological analyses utilize comoving distances along ($D_H$) and perpendicular to ($D_M$) the line of sight. Notably, there are $1\sim2\sigma$ deviations in $D_M$ and $D_H$ from Planck cosmology values in the luminous red galaxies (LRG) bins LRG1 and LRG2.This study examines the role of LRG1 and LRG2 in diverging DESI 2024 BAO cosmology from Planck cosmology. We use angle-averaged distance $D_V$ and the ratio $F_{\rm AP}=D_M/D_H$, which are more directly related to the measured monopole and quadrupole components of the galaxy power spectrum or correlation function, instead of the officially adopted $D_M$ and $D_H$. This transformation aims to isolate the influence of monopoles in LRG1 and LRG2 on deviations from $w=-1$. Our findings indicate that removing the $D_V$ data point in LRG2 aligns DESI + CMB + SNIa data compilation with $w=-1$ within a $2\sigma$ contour and reduces the $H_0$ discrepancy from the Planck 2018 results from $0.63\sigma$ to $0.31\sigma$. Similarly, excluding the $D_V$ data point from LRG1 shifts the $w_0/w_a$ contour toward $w=-1$, although no intersection occurs. This highlights the preference of both LRG1 and LRG2 BAO monopole components for the thawing dark energy model, with LRG2 showing a stronger preference. We provide the $D_V$ and $F_{\rm AP}$ data and their covariance alongside this paper.

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Forward citations

Cited by 6 Pith papers

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

  1. A Sequentially-Valid Reanalysis of DESI's Dynamical Dark Energy Signal

    astro-ph.CO 2026-07 accept novelty 7.0 of 10

    An anytime-valid e-process reanalysis shows DESI's dynamical dark energy evidence is a fragile LRG2-bin, specification-dependent signal that does not survive a trials correction.

  2. Tuning the cosmic instrument: robust cosmology through combined probes

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

    Low-redshift large-scale structure data pull the dark-energy equation-of-state posterior toward a cosmological constant and yield S8=0.777±0.017.

  3. The DESI DR1/DR2 evidence for dynamical dark energy is biased by low-redshift supernovae

    astro-ph.CO 2025-02 conditional novelty 5.0 of 10

    The DESI dynamical dark energy preference drops below 2 sigma after correcting a 0.043 mag intercept discrepancy in the low-redshift supernovae of DESY5.

  4. Constraints on Dark Energy Models Using Late Universe Probes

    astro-ph.CO 2025-06 conditional novelty 4.0 of 10

    Using late-universe probes only, the authors find all dark energy models remain within 1-2 sigma of Lambda CDM, which wins the Bayesian model comparison, and confirm that DESI's LRG1 and LRG2 points drive the dynamica...

  5. Dark energy and lensing anomaly in Planck CMB data

    astro-ph.CO 2025-02 conditional novelty 4.0 of 10

    When the Planck lensing amplitude AL is fitted freely, DESI+CMB+SN data no longer prefer evolving dark energy, and DESI BAO's lower matter density worsens the lensing anomaly in LambdaCDM.

  6. Dark energy and cosmic acceleration

    astro-ph.CO 2025-02 unverdicted

    A review chapter summarizing the history, theory, and current observations of dark energy, presenting no new research results.

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