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Intrinsic galaxy alignments in the KiDS-1000 bright sample: dependence on colour, luminosity, morphology, and galaxy scale

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arxiv 2502.09452 v2 pith:UVXPUT55 submitted 2025-02-13 astro-ph.CO astro-ph.GA

classification astro-ph.COastro-ph.GA
keywords galaxygalaxiessampledependenceluminosityalignmentfindintrinsic
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The intrinsic alignment (IA) of galaxies is a major astrophysical contaminant to weak gravitational lensing measurements, and the study of its dependence on galaxy properties helps provide meaningful physical priors that aid cosmological analyses. This work studied for the first time the dependence of IA on galaxy structural parameters. We measured the IA of bright galaxies, selected on apparent r-band magnitude r<20, in the Kilo-Degree Survey (KiDS). Machine-learning-based photometric redshift estimates are available for this galaxy sample that helped us obtain a clean measurement of its IA signal. We supplemented this sample with a catalogue of structural parameters from Sersic profile fits to the surface-brightness profiles of the galaxies. We split the sample on galaxy intrinsic colour, luminosity, and Sersic index, and we fitted the non-linear linear alignment model to galaxy position-shape projected correlation function measurements on large scales. We observe a power-law luminosity dependence of the large-scale IA amplitude, $A_{IA}$, for both the red and high-Sersic-index ($n_s>2.5$) samples, and find no significant difference between the two. We measure an $\sim1.5\sigma$ lower $A_{IA}$ for red galaxies that also have a Sersic index of $n_s<4$ compared to the expected amplitude predicted using the sample's luminosity. We also probe the IA of red galaxies as a function of galaxy scale by varying the radial weight employed in the shape measurement. On large scales (above 6 Mpc/$h$), we do not detect a significant difference in the alignment. On smaller scales, we observe that IA increase with galaxy scale, with outer galaxy regions showing stronger alignments than inner regions. Finally, for intrinsically blue galaxies, we find $A_{IA}=-0.67\pm1.00$, which is consistent with previous works, and we find IA to be consistent with zero for the low-Sersic-index ($n_s<2.5$) sample.

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Forward citations

Cited by 4 Pith papers

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

  1. Where Galaxies Point: First Measurement of the Large-Scale Axial Intrinsic Alignment

    astro-ph.CO 2025-11 reject novelty 7.0 of 10

    DES galaxy position angles show a coherent preferred axis (RA≈300°, Dec≈50°) — elliptical major and spiral minor axes aligned along it — reported as the first detection of horizon-scale axial intrinsic alignment.

  2. Intrinsic alignment demographics for next-generation lensing: Revealing galaxy property trends with DESI Y1 direct measurements

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

    With over two million DESI galaxies, the bluest galaxies show zero intrinsic alignment across z=0.05 to 1.55, and red galaxy alignment is set by luminosity and colour alone, with no extra redshift dependence.

  3. Intrinsic alignment of disks and ellipticals across hydrodynamical simulations

    astro-ph.GA 2025-10 conditional novelty 6.0 of 10

    With consistent shape and morphology definitions, disk-galaxy intrinsic alignments are positive in TNG300 and EAGLE, positive or null in Horizon-AGN, and negative only for reduced shapes at z=1 with |v/σ| disk selecti...

  4. Enhancing Galaxy Classification with U-Net Variational Autoencoders for Image Denoising

    astro-ph.IM 2025-06 reject novelty 5.0 of 10

    Applying a U-Net VAE denoising step to galaxy images before classification is reported to improve accuracy, reaching 97.45% with a GCNN on Galaxy10 DECaLS, although no direct noisy baseline is presented.

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