Revisiting the 'Lensing is Low' Problem with UNIONS
Martine C. T. Campbell, Jack Elvin-Poole, Michael J. Hudson, Thomas de Boer, Sacha Guerrini, Fabian Hervas-Peters, Hendrik Hildebrandt, Martin Kilbinger, Eugene A. Magnier, Alan W. McConnachie, Charlie T. Mpetha, Romain Paviot, Ludovic Van Waerbeke, Anna Wittje
astro-ph.CO
Submitted: 2026-06-22
Comments: 21 article pages, 19 figures, submitted to MNRAS
Code: https://github.com/DarkQuestCosmology/dark_emulator_
Project page: https://darkquestcosmology.github.io
License: http://creativecommons.org/licenses/by/4.0/
The gist: We present new measurements of the galaxy-galaxy lensing (GGL) signal around Baryon Oscillation Spectroscopic Survey (BOSS) CMASS galaxies using background sources from the Ultraviolet Near-Infrared
Terminology
Abstract
We present new measurements of the galaxy-galaxy lensing (GGL) signal around Baryon Oscillation Spectroscopic Survey (BOSS) CMASS galaxies using background sources from the Ultraviolet Near-Infrared Optical Northern Survey (UNIONS). With high-quality imaging of background sources and a survey overlap of approximately 2650 square degrees, we obtain precise large-scale GGL measurements. Building on these new measurements, we revisit the so-called 'lensing is low' problem, wherein galaxy-halo connection models calibrated on galaxy clustering (GC) data over-predict the GGL signal by 20-40% assuming CMB-based cosmological parameters. We model the galaxy-halo connection using a halo occupation distribution (HOD), and perform joint fits to both GGL and GC signals across a wide range of scales, as well as a GC-only fit. In contrast to previous work, we do not find a significant 'lensing is low' effect in the CMASS sample, although the best joint fits are achieved by decreasing the amplitude of the matter power spectrum slightly relative to the Planck cosmological parameters. Overall, we find that two models describe our observables similarly well: one where HOD and cosmological parameters are free, and one where HOD, cosmological, and feedback parameters are free. Importantly, we emphasise the role of large scales in constraining the lensing is low effect, shifting the narrative away from an exclusively small-scale issue.
Sources
- UNIONS-3500 Weak Lensing: III. 2D Cosmological Constraints in Configuration Space
- UNIONS-3500 Weak Lensing: IV. 2D cosmological constraints in harmonic space
- UNIONS: The Ultraviolet Near-Infrared Optical Northern Survey
- UNIONS-3500 Weak Lensing: I. A Galaxy Shape Catalogue in the Northern Sky
- Metacalibration: Direct Self-Calibration of Biases in Shear Measurement
- Dark Energy Survey Year 3 Results: Multi-Probe Modeling Strategy and Validation
- Cosmological Constraints from Full-Scale Clustering and Galaxy-Galaxy Lensing with DESI DR1
- Euclid Definition Study Report
- Weak Gravitational Lensing
- Corrfunc: Blazing fast correlation functions with AVX512F SIMD Intrinsics
- The Dark Energy Survey
- KiDS-Legacy: Cosmological constraints from cosmic shear with the complete Kilo-Degree Survey
- Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration
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