A fundamental prediction of the cold dark matter (CDM) model of structure formation is the existence of a vast population of dark matter haloes extending to subsolar masses. By contrast, other dark matter models, such as a warm thermal relic (WDM), predict a cutoff in the mass function at a mass which, for popular models, lies approximately between 107 and 1010M⊙. We use mock observations to demonstrate the viability of a forward modelling approach to extract information about low-mass dark haloes lying along the line of sight to galaxy–galaxy strong lenses. This can be used to constrain the mass of a thermal relic dark matter particle, mDM. With 50 strong lenses at Hubble Space Telescope resolution and a maximum pixel signal-to-noise rati...
Strong gravitational lensing offers a compelling test of the cold dark matter paradigm, as it allows...
We present an analysis of seven strongly gravitationally lensed quasars and the corresponding constr...
The $\Lambda$CDM paradigm successfully explains the large-scale structure of the Universe, but is le...
The cold dark matter (CDM) cosmological model unambiguously predicts that a large number of haloes s...
A defining prediction of the cold dark matter cosmological model is the existence of a very large po...
Strong gravitational lensing offers a compelling test of the cold dark matter paradigm, as it allows...
The defining characteristic of the cold dark matter (CDM) hypothesis is the presence of a very large...
One of the frontiers for advancing what is known about dark matter lies in using strong gravitationa...
Dark matter makes up most of the mass in the Universe, and yet its particle nature remains unknown. ...
We explore the impact of a ΛWDM cosmological scenario on the clustering properties large-scale struc...
We study several possible ways of constraining the dark matter particle mass through galaxy-galaxy s...
We present a cosmological hydrodynamical simulation of a 1013 M⊙ galaxy group and its environment (o...
We combine data from a number of N-body simulations to predict the abundance of dark haloes in cold ...
Particle physics theories predict the existence of particles (such as keV mass sterile neutrinos) wh...
Strong gravitational lensing offers a compelling test of the cold dark matter paradigm, as it allows...
Strong gravitational lensing offers a compelling test of the cold dark matter paradigm, as it allows...
We present an analysis of seven strongly gravitationally lensed quasars and the corresponding constr...
The $\Lambda$CDM paradigm successfully explains the large-scale structure of the Universe, but is le...
The cold dark matter (CDM) cosmological model unambiguously predicts that a large number of haloes s...
A defining prediction of the cold dark matter cosmological model is the existence of a very large po...
Strong gravitational lensing offers a compelling test of the cold dark matter paradigm, as it allows...
The defining characteristic of the cold dark matter (CDM) hypothesis is the presence of a very large...
One of the frontiers for advancing what is known about dark matter lies in using strong gravitationa...
Dark matter makes up most of the mass in the Universe, and yet its particle nature remains unknown. ...
We explore the impact of a ΛWDM cosmological scenario on the clustering properties large-scale struc...
We study several possible ways of constraining the dark matter particle mass through galaxy-galaxy s...
We present a cosmological hydrodynamical simulation of a 1013 M⊙ galaxy group and its environment (o...
We combine data from a number of N-body simulations to predict the abundance of dark haloes in cold ...
Particle physics theories predict the existence of particles (such as keV mass sterile neutrinos) wh...
Strong gravitational lensing offers a compelling test of the cold dark matter paradigm, as it allows...
Strong gravitational lensing offers a compelling test of the cold dark matter paradigm, as it allows...
We present an analysis of seven strongly gravitationally lensed quasars and the corresponding constr...
The $\Lambda$CDM paradigm successfully explains the large-scale structure of the Universe, but is le...