Observational constraints on dark matter in galaxies over the last 10 billion years

Proceedings of the International Astronomical Union 20:A32 (2026) 405-410

Authors:

SH Price, R Genzel, NM Förster Schreiber, LJ Tacconi, H Übler, TT Shimizu, R Herrera-Camus, LLY Lee, MJ Lee, D Liu, D Lutz, A Nestor Shachar, J Espejo, JB Jolly, S Pastras, A Renzini, E Wisnioski, S Wuyts, A Burkert, A Contursi, R Coogan, RI Davies, RL Davies, M Fossati, P Lang, JT Mendel, T Naab, A Schruba, A Sternberg, S Tacchella, D Wilman, A Beifiori, S Belli, R Bender, S Berta, A Bolatto, N Bouché, G Brammer, CM Carollo, J Chan, F Combes, P Cox, G Cresci, A Dekel, D Elbaz, A Galametz, S Garcia-Burillo, T Kodama, M Krips, SJ Lilly, C Mancini, I Momcheva, EJ Nelson, R Neri, S Newman, Y Peng, D Rosario, M Rubio, R Saglia, K Schuster, AE Shapley, E Strobl-Hicks, E Sturm, K Tadaki, A Usero, P Van Dokkum, F Walter, A Weiss, E Wuyts, G Zamorani

Abstract:

Dynamical tracers provide key measurements of galaxies' total masses, complementing other methods of determining stellar and gas masses and also providing some of the only possible constraints on their dark matter content. Until recently, the deep spectrally-resolved observations necessary for these measurements were only accessible out to relatively low redshifts. Thanks to new observatories and instruments, particularly near infrared multi-object spectrographs as well as sub-mm interferometers, galaxy dynamical masses can now be measured out to the peak epoch of cosmic star formation and even earlier epochs. Here I give an overview of dynamical mass constraints of galaxy-scale dark matter fractions from the present day out to z ∼ 3. I also discuss comparisons between measurements from different dynamical tracers, and the modeling challenges and degeneracies that complicate our interpretations of observations.

SN2026fgk/GRB260310A Pan-STARRS reference images

University of Oxford (2026)

Abstract:

This repository contains the Pan-STARRS grizy reference frame stacks that were utilised by Hinds et al. (2026) for accurate template subtraction of the field of SN2026fgk. If one makes use of these data, the work of Hinds et al. (2026) must be credited.

NOTE. There is a known compatibility issue with Pan-STARRS image coordinates in DS9. To resolve this, one can switch to the FK4 coordinate system.

Link to article: https://ui.adsabs.harvard.edu/abs/2026arXiv260605146H/abstract

A Young Supernova Selection Pipeline For The LSST Era

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) (2025) staf2278

Authors:

Harry Addison, Chris Frohmaier, Kate Maguire, Robert C Nichol, Isobel Hook, Stephen J Smartt

Abstract:

Abstract Early-time spectroscopy of supernovae (SNe), acquired within days of explosion, yields crucial insights into their outermost ejecta layers, facilitating the study of their environments, progenitor systems, and explosion mechanisms. Recent efforts in early discovery and follow-up of SNe have shown the potential insights that can be gained from early-time spectra. Surveys such as the Time-Domain Extragalactic Survey (TiDES), conducted with the 4-meter Multi-Object Spectroscopic Telescope (4MOST), will provide spectroscopic follow-up of transients discovered by the Legacy Survey of Space and Time (LSST). Current simulations indicate that early-time spectroscopic studies conducted with TiDES data will be limited by the current SN selection criteria. To enhance early-time SN spectroscopic studies from TiDES-like surveys, we propose a set of selection criteria focusing on young SNe (YSNe), which we define as SNe prior to −10 days before peak brightness. Utilising the Zwicky Transient Facility transient alerts, we developed criteria to select YSNe while minimising the sample’s contamination rate to 23percnt. The developed criteria were applied to LSST simulations, yielding a sample of 694 Deep Drilling Field survey SNe and 56260 Wide Fast Deep survey SNe for follow-up. We demonstrate that our criteria enables the selection of SNe at early-times, enhancing future early-time spectroscopic SN studies from TiDES-like surveys. Finally, we investigated 4MOST-like observing strategies to increase the sample of spectroscopically observed YSNe. We propose that a 4MOST-like observing strategy that follows LSST with a delay of 3 days is optimal for a TiDES-like SN survey in terms of the number of classifiable spectra obtained, while a 1 day delay is most optimal for enhancing the early-time science in conjunction with our YSN selection criteria.

Improved lanthanide constraints for the kilonova AT 2017gfo

(2025)

Authors:

JH Gillanders, A Flors, R Ferreira da Silva

TITAN DR1: An Improved, Validated, and Systematically-Controlled Recalibration of ATLAS Photometry toward Type Ia Supernova Cosmology

(2025)

Authors:

Elijah G Marlin, Yukei S Murakami, Dillon Brout, Jack W Tweddle, Brodie Popovic, Ken W Smith, Stephen J Smartt, Daniel M Scolnic, David Jones, Erik R Peterson, Adam G Riess, Maria Vincenzi, Nora F Sherman, Maria Acevedo, Jasper Milstein, Mitchell Dixon, Armin Rest