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October 11, 2025Astronomy and Astrophysics4 citations

Matter power spectrum reconstruction with KiDS-Legacy: Improved internal ΛCDM consistency and preference for strong baryonic feedback

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JBJeger C. BroxtermanPŠP. ŠimonLPLucas Porth

Key Points

  • The reconstruction of the matter power spectrum shows improved internal consistency at redshift z less than 0.7, aligning with ΛCDM predictions.
  • At large scales, we measure density fluctuations with σ_8=0.81, supporting tension investigations in cosmological models.
  • The power spectrum is suppressed by about 30% at small scales, indicating a significant influence of baryonic feedback compared to dark matter-only models.
  • This analysis enhances our understanding of structure growth and cosmic evolution through precise power spectrum measurements.

Abstract

Direct measurements of the matter power spectrum, P_ m (k, z), provide a powerful tool for investigating the observed tensions between models of structure growth, while also testing the internal consistency of cosmological probes. We analysed the cosmic shear data from the final data release of the Kilo-Degree Survey (KiDS), and present a deprojected P_ m (k, z), measured in up to three redshift bins. Compared to analyses using previous KiDS releases, we find improved internal consistency in the złesssim0. 7 regime. At large scales, kłesssim0. 1, h, ̊m Mpc^ our power spectrum reconstruction aligns with ΛCDM predictions with a density fluctuation amplitude σ₈=0. 81. Furthermore, at small scales, k=3--20, h, ̊m Mpc^, the average matter power spectrum is suppressed by 30%±10% ̊m (stat. ) ±4% ̊m (sys. ) with 2. 8σ significance relative to a dark matter-only model, consistent with expectations of strong baryonic feedback.

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Cite This Study

Broxterman et al. (2025) studied this question.

synapsesocial.com/papers/68e9b1d0ba7d64b6fc132ce2https://doi.org/10.1051/0004-6361/202557182
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