Constraints on equivalence principle violation from gamma ray bursts

Physical Review D American Physical Society 104 (2021) 084025

Authors:

Deaglan J Bartlett, Dexter Bergsdal, Harry Desmond, Pedro G Ferreira, Jens Jasche

Abstract:

Theories of gravity that obey the Weak Equivalence Principle have the same Parametrised Post-Newtonian parameter $\gamma$ for all particles at all energies. The large Shapiro time delays of extragalactic sources allow us to put tight constraints on differences in $\gamma$ between photons of different frequencies from spectral lag data, since a non-zero $\Delta \gamma$ would result in a frequency-dependent arrival time. The majority of previous constraints have assumed that the Shapiro time delay is dominated by a few local massive objects, although this is a poor approximation for distant sources. In this work we consider the cosmological context of these sources by developing a source-by-source, Monte Carlo-based forward model for the Shapiro time delays by combining constrained realisations of the local density field using the Bayesian origin reconstruction from galaxies algorithm with unconstrained large-scale modes. Propagating uncertainties in the density field reconstruction and marginalising over an empirical model describing other contributions to the time delay, we use spectral lag data of Gamma Ray Bursts from the BATSE satellite to constrain $\Delta \gamma < 2.1 \times 10^{-15}$ at $1 \sigma$ confidence between photon energies of $25 {\rm \, keV}$ and $325 {\rm \, keV}$.

The VANDELS Survey: new constraints on the high-mass X-ray binary populations in normal star-forming galaxies at 3 z < 5.5

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 505:4 (2021) 4798-4812

Authors:

A Saxena, RS Ellis, PU Förster, A Calabrò, L Pentericci, AC Carnall, M Castellano, F Cullen, A Fontana, M Franco, JPU Fynbo, A Gargiulo, B Garilli, NP Hathi, DJ McLeod, R Amorín, G Zamorani

Probing supermassive stars and massive black hole seeds through gravitational wave inspirals

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 505:3 (2021) 3944-3949

Authors:

Yael Raveh, Yonadav Barry Ginat, Hagai B Perets, Tyrone E Woods

Understanding the extreme luminosity of DES14X2fna

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 505:3 (2021) 3950-3967

Authors:

M Grayling, CP Gutiérrez, M Sullivan, P Wiseman, M Vincenzi, S González-Gaitán, BE Tucker, L Galbany, L Kelsey, C Lidman, E Swann, M Smith, C Frohmaier, D Carollo, K Glazebrook, GF Lewis, A Möller, SR Hinton, SA Uddin, TMC Abbott, M Aguena, S Avila, E Bertin, S Bhargava, D Brooks, A Carnero Rosell, M Carrasco Kind, J Carretero, M Costanzi, LN da Costa, J De Vicente, S Desai, HT Diehl, P Doel, S Everett, I Ferrero, P Fosalba, J Frieman, J García-Bellido, E Gaztanaga, D Gruen, RA Gruendl, J Gschwend, G Gutierrez, B Hoyle, K Kuehn, N Kuropatkin, M Lima, N MacCrann, JL Marshall, P Martini, R Miquel, R Morgan, A Palmese, F Paz-Chinchón, AA Plazas, AK Romer, C Sánchez, E Sanchez, V Scarpine, S Serrano, I Sevilla-Noarbe, M Soares-Santos, E Suchyta, G Tarle, D Thomas, C To, TN Varga, AR Walker, RD Wilkinson

How cosmological merger histories shape the diversity of stellar haloes

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) (2021)

Authors:

Martin P Rey, Tjitske K Starkenburg

Abstract:

We introduce and apply a new approach to probe the response of galactic stellar haloes to the interplay between cosmological merger histories and galaxy formation physics. We perform dark matter-only, zoomed simulations of two Milky Way-mass hosts and make targeted, controlled changes to their cosmological histories using the genetic modification technique. Populating each history's stellar halo with a semi-empirical, particle tagging approach then enables a controlled study, with all instances converging to the same large-scale structure, dynamical and stellar mass at $z=0$ as their reference. These related merger scenarios alone generate an extended spread in stellar halo mass fractions (1.5 dex) comparable to the observed population, with the largest scatter achieved by growing late ($z\leq1$) major mergers that spread out existing stars to create massive, in-situ dominated stellar haloes. Increasing a last major merger at $z\sim2$ brings more accreted stars into the inner regions, resulting in smaller scatter in the outskirts which are predominantly built by subsequent minor events. Exploiting the flexibility of our semi-empirical approach, we show that the diversity of stellar halo masses across scenarios is reduced by allowing shallower slopes in the stellar mass--halo mass relation for dwarf galaxies, while it remains conserved when central stars are born with hotter kinematics across cosmic time. The merger-dependent diversity of stellar haloes thus responds distinctly to assumptions in modelling the central and dwarf galaxies respectively, opening exciting prospects to constrain star formation and feedback at different galactic mass-scales with the coming generation of deep, photometric observatories.