Light-Curve and Spectral Properties of Type II Supernovae from the ATLAS survey

ArXiv 2602.03638 (2026)

Authors:

K Ertini, JP Anderson, G Folatelli, S González-Gaitán, CP Gutiérrez, J Sollerman, O Rodríguez, A Aryan, T-W Chen, E Concepcion, SP Cosentino, M Dennefeld, N Erasmus, M Fraser, L Galbany, M Gromadzki, C Inserra, TE Müller-Bravo, PJ Pessi, T Pessi, T Petrushevska, G Pignata, F Ragosta, S Srivastav, DR Young

WISDOM Project – XXVII. Giant molecular clouds of the lenticular galaxy NGC 1387: similarities with spiral galaxy clouds

Monthly Notices of the Royal Astronomical Society Oxford University Press 547:4 (2026) stag221

Authors:

Fu-Heng Liang, Martin Bureau, Lijie Liu, Pandora Dominiak, Woorak Choi, Timothy A Davis, Jacob Elford, Jindra Gensior, Anan Lu, Ilaria Ruffa, Selçuk Topal, Thomas G Williams, Hengyue Zhang

Abstract:

Molecular gas is crucial to understanding star formation and galaxy evolution, but the giant molecular clouds (GMCs) of early-type galaxies (ETGs) have rarely been studied. Here, we present analyses of the spatially resolved GMCs of the lenticular galaxy NGC 1387, exploiting high spatial resolution ( or 14 pc) CO(2-1) line observations from the Atacama Large Millimeter/submillimeter Array. We identify 1285 individual GMCs and measure the fundamental properties (radius, velocity dispersion, and molecular gas mass) of each with a modified version of the CPROPStoo package. Unusually for an ETG, the GMCs of NGC 1387 follow scaling relations very similar to those of the Milky Way disc and Local Group galaxy clouds, and most are virialized. GMCs with large masses and radii and/or small galactocentric distances have their angular momenta aligned with the large-scale galactic rotation, while other GMCs do not. These results show that ETGs have more diversified GMC properties than previously thought. We discuss potential reasons for such diversity, and viewing-angle dependency is a plausible candidate.

pop-cosmos: Forward modeling KiDS-1000 redshift distributions using realistic galaxy populations

ArXiv 2602.03935 (2026)

Authors:

Boris Leistedt, Hiranya V Peiris, Anik Halder, Stephen Thorp, Daniel J Mortlock, Arthur Loureiro, Justin Alsing, Gurjeet Jagwani, Madalina N Tudorache, Sinan Deger, Joel Leja, Benedict Van den Bussche, Angus H Wright, Shun-Sheng Li, Konrad Kuijken, Hendrik Hildebrandt

pop-cosmos: Redshifts and physical properties of KiDS-1000 galaxies

ArXiv 2602.0393 (2026)

Authors:

Anik Halder, Hiranya V Peiris, Stephen Thorp, Boris Leistedt, Daniel J Mortlock, Gurjeet Jagwani, Madalina N Tudorache, Sinan Deger, Benedict Van den Bussche, Joel Leja, Angus H Wright

A catalog to unite them all: REGALADE, a revised galaxy compilation for the advanced detector era

Astronomy & Astrophysics EDP Sciences 706 (2026) a284

Authors:

Hugo Tranin, Nadejda Blagorodnova, Marco A Gómez-Muñoz, Maxime Wavasseur, Paul J Groot, Lloyd Landsberg, Fiorenzo Stoppa, Steven Bloemen, Paul M Vreeswijk, Daniëlle LA Pieterse, Jan van Roestel, Simone Scaringi, Sara Faris

Abstract:

Context . Many applications in transient science, gravitational wave follow-up, and galaxy population studies require all-sky galaxy catalogs with reliable distances, extents, and stellar masses. However, existing catalogs often lack completeness beyond ~100 Mpc, suffer from stellar contamination, or do not provide homogeneous stellar mass estimates and size information. Aims . Our goal is to build a high-purity, high-completeness, all-sky galaxy catalog out to 2000 Mpc, specifically designed to support time-domain and multi-messenger astrophysics. Methods . We combined major galaxy catalogs and deep imaging surveys – including the Legacy Surveys, Pan-STARRS, DELVE, and SDSS – and added spectroscopic, photometric, and redshift-independent distances. We cleaned the sample using the Gaia catalog to remove stars and visually inspected all ambiguous cases below 100 Mpc through a classification platform that gathered 27 000 expert votes. Stellar masses were estimated using optical and mid-infrared profile-fit photometry, and we improved the accuracy of photometric distances by combining multiple independent estimates. Results . The resulting catalog, REGALADE, includes nearly 80 million galaxies with distances under 2000 Mpc. It provides stellar masses for 88% of the sample and ellipse fits for 80%. REGALADE is more than 90% complete for galaxies contributing 50% of the total r -band luminosity out to 360 Mpc. In science tests, it recovers 60% more known supernova hosts, doubles the number of low-luminosity transient hosts, and identifies more reliable hosts for ultraluminous and hyper-luminous X-ray sources. Conclusions . REGALADE is one of the most complete and reliable all-sky galaxy catalog to date for the nearby Universe, built for real-world applications in transient and multi-messenger astrophysics. The full dataset, visual classifications, and code will be released to support broad community use.