KiDS-Legacy calibration: Unifying shear and redshift calibration with the SKiLLS multi-band image simulations

Astronomy & Astrophysics EDP Sciences 670 (2023) A100-A100

Authors:

Shun-Sheng Li, Konrad Kuijken, Henk Hoekstra, Lance Miller, Catherine Heymans, Hendrik Hildebrandt, Jan Luca van den Busch, Angus H Wright, Mijin Yoon, Maciej Bilicki, Matías Bravo, Claudia del P. Lagos

Abstract:

We present SKiLLS, a suite of multi-band image simulations for the weak lensing analysis of the complete Kilo-Degree Survey (KiDS), dubbed KiDS-Legacy analysis. The resulting catalogues enable joint shear and redshift calibration, enhancing the realism and hence accuracy over previous efforts. To create a large volume of simulated galaxies with faithful properties and to a sufficient depth, we integrated cosmological simulations with high-quality imaging observations. We also improved the realism of simulated images by allowing the point spread function (PSF) to differ between CCD images, including stellar density variations and varying noise levels between pointings. Using realistic variable shear fields, we accounted for the impact of blended systems at different redshifts. Although the overall correction is minor, we found a clear redshift-bias correlation in the blending-only variable shear simulations, indicating the non-trivial impact of this higher-order blending effect. We also explored the impact of the PSF modelling errors and found a small yet noticeable effect on the shear bias. Finally, we conducted a series of sensitivity tests, including changing the input galaxy properties. We conclude that our fiducial shape measurement algorithm, lensfit, is robust within the requirements of lensing analyses with KiDS. As for future weak lensing surveys with tighter requirements, we suggest further investments in understanding the impact of blends at different redshifts, improving the PSF modelling algorithm and developing the shape measurement method to be less sensitive to the galaxy properties.Comment: 28 pages, 31 figures, 2 tables, minor revisions to match the final accepted versio

The Simons Observatory: pipeline comparison and validation for large-scale B-modes

(2023)

Authors:

K Wolz, S Azzoni, C Hervias-Caimapo, J Errard, N Krachmalnicoff, D Alonso, C Baccigalupi, A Baleato Lizancos, ML Brown, E Calabrese, J Chluba, J Dunkley, G Fabbian, N Galitzki, B Jost, M Morshed, F Nati

Quijote-PNG: The Information Content of the Halo Power Spectrum and Bispectrum

Astrophysical Journal 943:2 (2023)

Authors:

WR Coulton, F Villaescusa-Navarro, D Jamieson, M Baldi, G Jung, D Karagiannis, M Liguori, L Verde, BD Wandelt

Abstract:

We investigate how much can be learnt about four types of primordial non-Gaussianity (PNG) from small-scale measurements of the halo field. Using the quijote-png simulations, we quantify the information content accessible with measurements of the halo power spectrum monopole and quadrupole, the matter power spectrum, the halo-matter cross spectrum, and the halo bispectrum monopole. This analysis is the first to include small, nonlinear scales, up to k max = 0.5 h Mpc − 1 , and to explore whether these scales can break degeneracies with cosmological and nuisance parameters making use of thousands of N-body simulations. We perform all the halo measurements in redshift space with a single sample comprised of all halos with mass >3.2 × 1013 h −1 M . For local PNG, measurements of the scale-dependent bias effect from the power spectrum using sample variance cancellation provide significantly tighter constraints than measurements of the halo bispectrum. In this case measurements of the small scales add minimal additional constraining power. In contrast, the information on equilateral and orthogonal PNG is primarily accessible through the bispectrum. For these shapes, small-scale measurements increase the constraining power of the halo bispectrum by up to 4×, though the addition of scales beyond k ≈ 0.3 h Mpc−1 improves constraints largely through reducing degeneracies between PNG and the other parameters. These degeneracies are even more powerfully mitigated through combining power spectrum and bispectrum measurements. However, even with combined measurements and small-scale information, equilateral non-Gaussianity remains highly degenerate with σ 8 and our bias model.

Euclid: Forecasts from the void-lensing cross-correlation⋆

Astronomy & Astrophysics EDP Sciences 670 (2023) a47

Authors:

M Bonici, C Carbone, S Davini, P Vielzeuf, L Paganin, V Cardone, N Hamaus, A Pisani, AJ Hawken, A Kovacs, S Nadathur, S Contarini, G Verza, I Tutusaus, F Marulli, L Moscardini, M Aubert, C Giocoli, A Pourtsidou, S Camera, S Escoffier, A Caminata, S Di Domizio, M Martinelli, M Pallavicini, V Pettorino, Z Sakr, D Sapone, G Testera, S Tosi, V Yankelevich, A Amara, N Auricchio, M Baldi, D Bonino, E Branchini, M Brescia, J Brinchmann, V Capobianco, J Carretero, M Castellano, S Cavuoti, R Cledassou, G Congedo, L Conversi, Y Copin, L Corcione, F Courbin, M Cropper, A Da Silva, H Degaudenzi, M Douspis, F Dubath, CAJ Duncan, X Dupac, S Dusini, A Ealet, S Farrens, S Ferriol, P Fosalba, M Frailis, E Franceschi, M Fumana, P Gómez-Alvarez, B Garilli, B Gillis, A Grazian, F Grupp, L Guzzo, SVH Haugan, W Holmes, F Hormuth, A Hornstrup, K Jahnke, M Kümmel, S Kermiche, A Kiessling, M Kilbinger, M Kunz, H Kurki-Suonio, R Laureijs, S Ligori, PB Lilje, I Lloro, E Maiorano, O Mansutti, O Marggraf, K Markovic, R Massey, E Medinaceli, M Melchior, M Meneghetti, G Meylan, M Moresco, E Munari, SM Niemi, C Padilla, S Paltani, F Pasian, K Pedersen, WJ Percival, S Pires, G Polenta, M Poncet, L Popa, F Raison, R Rebolo, A Renzi, J Rhodes, E Rossetti, R Saglia, B Sartoris, M Scodeggio, A Secroun, G Seidel, C Sirignano, G Sirri, L Stanco, J-L Starck, C Surace, P Tallada-Crespí, D Tavagnacco, AN Taylor, I Tereno, R Toledo-Moreo, F Torradeflot, EA Valentijn, L Valenziano, Y Wang, J Weller, G Zamorani, J Zoubian, S Andreon

Bringing Stellar Evolution & Feedback Together: Summary of proposals from the Lorentz Center Workshop, 2022

ArXiv 2301.13611 (2023)

Authors:

Sam Geen, Poojan Agrawal, Paul A Crowther, BW Keller, Alex de Koter, Zsolt Keszthelyi, Freeke van de Voort, Ahmad A Ali, Frank Backs, Lars Bonne, Vittoria Brugaletta, Annelotte Derkink, Sylvia Ekström, Yvonne A Fichtner, Luca Grassitelli, Ylva Götberg, Erin R Higgins, Eva Laplace, Kong You Liow, Marta Lorenzo, Anna F McLeod, Georges Meynet, Megan Newsome, G André Oliva, Varsha Ramachandran, Martin P Rey, Steven Rieder, Emilio Romano-Díaz, Gautham Sabhahit, Andreas AC Sander, Rafia Sarwar, Hanno Stinshoff, Mitchel Stoop, Dorottya Szécsi, Maxime Trebitsch, Jorick S Vink, Ethan Winch