Forbidden hugs in pandemic times

Astronomy & Astrophysics EDP Sciences 646 (2021) a119

Authors:

A Pastorello, M Fraser, G Valerin, A Reguitti, K Itagaki, P Ochner, SC Williams, D Jones, J Munday, SJ Smartt, KW Smith, S Srivastav, N Elias-Rosa, E Kankare, E Karamehmetoglu, P Lundqvist, PA Mazzali, U Munari, MD Stritzinger, L Tomasella, JP Anderson, KC Chambers, A Rest

INSPIRE: INvestigating Stellar Population In RElics

Astronomy & Astrophysics EDP Sciences 646 (2021) a28

Authors:

C Spiniello, C Tortora, G D’Ago, L Coccato, F La Barbera, A Ferré-Mateu, NR Napolitano, M Spavone, D Scognamiglio, M Arnaboldi, A Gallazzi, L Hunt, S Moehler, M Radovich, S Zibetti

The Evolution of NGC 7465 as Revealed by its Molecular Gas Properties

(2021)

Authors:

Lisa M Young, David S Meier, Martin Bureau, Alison Crocker, Timothy A Davis, Selçuk Topal

Constraints on the presence of platinum and gold in the spectra of the kilonova AT2017gfo

(2021)

Authors:

James H Gillanders, Michael McCann, Stuart A Sim Stephen J Smartt, Connor P Ballance

Constraints on Galileons from the positions of supermassive black holes

PHYSICAL REVIEW D American Physical Society (APS) 103:2 (2021) 23523

Authors:

Dj Bartlett, H Desmond, Pg Ferreira

Abstract:

Galileons are scalar field theories which obey the Galileon symmetry $\varphi \to \varphi + b + c_\mu x^\mu$ and are capable of self-acceleration if they have an inverted sign for the kinetic term. These theories violate the Strong Equivalence Principle, such that black holes (BHs) do not couple to the Galileon field, whereas non-relativistic objects experience a fifth force with strength $\Delta G / G_{\rm N}$ relative to gravity. For galaxies falling down a gradient in the Galileon field, this results in an offset between the centre of the galaxy and its host supermassive BH. We reconstruct the local gravitational and Galileon fields through a suite of constrained N-body simulations (which we dub CSiBORG) and develop a Monte Carlo-based forward model for these offsets on a galaxy-by-galaxy basis. Using the measured offset between the optical centre and active galactic nucleus of 1916 galaxies from the literature, propagating uncertainties in the input quantities and marginalising over an empirical noise model describing astrophysical and observational noise, we constrain the Galileon coupling to be $\Delta G / G_{\rm N} < 0.16$ at $1\sigma$ confidence for Galileons with crossover scale $r_{\rm C} \gtrsim H_0^{-1}$.