We propose that dark matter is composed of particles that naturally have the correct thermal relic density, but have neither weak-scale masses nor weak interactions. These models emerge naturally from gauge-mediated supersymmetry breaking, where they elegantly solve the dark-matter problem. The framework accommodates single or multiple component dark matter, dark-matter masses from 10 MeV to 10 TeV, and interaction strengths from gravitational to strong. These candidates enhance many direct and indirect signals relative to weakly interacting massive particles and have qualitatively new implications for dark-matter searches and cosmological implications for colliders
AbstractIn this study, we investigate a scenario that dark matter (DM) has only gravitational intera...
International audienceThe existence of cosmological dark matter is in the bedrock of the modern cosm...
We discuss a class of Dark Matter (DM) models that, although inherently strongly coupled, appear wea...
We propose that dark matter is composed of particles that naturally have the correct thermal relic d...
There is a compelling observational evidence of the existence of Dark Matter (DM). The agreement bet...
The ‘WIMP miracle ’ for the relic abundance of thermal dark matter mo-tivates weak scale dark matter...
Possible dark matter candidates in particle physics span a mass range extending over fifty orders of...
The Standard Model (SM) of particle physics has achieved remarkable success as a result of several d...
12 pages. Invited talk at DARK 2002, 4th Int. Conf. on Dark Matter in Astro and Particle Physics, Ca...
In gauge-mediated theories supersymmetry breaking originates in a strongly interacting sector and is...
More than 80 years after its first postulation in modern form, the existence and distribution of dar...
An important discovery of the last century was that the physical nature of most of the gravitating m...
It is a puzzle why the densities of dark matter and dark energy are nearly equal today when they sca...
In this work we complete a model independent analysis of dark matter constraining its mass and inter...
Recent breakthroughs in cosmology reveal that a quarter of the Universe is composed of dark matter, ...
AbstractIn this study, we investigate a scenario that dark matter (DM) has only gravitational intera...
International audienceThe existence of cosmological dark matter is in the bedrock of the modern cosm...
We discuss a class of Dark Matter (DM) models that, although inherently strongly coupled, appear wea...
We propose that dark matter is composed of particles that naturally have the correct thermal relic d...
There is a compelling observational evidence of the existence of Dark Matter (DM). The agreement bet...
The ‘WIMP miracle ’ for the relic abundance of thermal dark matter mo-tivates weak scale dark matter...
Possible dark matter candidates in particle physics span a mass range extending over fifty orders of...
The Standard Model (SM) of particle physics has achieved remarkable success as a result of several d...
12 pages. Invited talk at DARK 2002, 4th Int. Conf. on Dark Matter in Astro and Particle Physics, Ca...
In gauge-mediated theories supersymmetry breaking originates in a strongly interacting sector and is...
More than 80 years after its first postulation in modern form, the existence and distribution of dar...
An important discovery of the last century was that the physical nature of most of the gravitating m...
It is a puzzle why the densities of dark matter and dark energy are nearly equal today when they sca...
In this work we complete a model independent analysis of dark matter constraining its mass and inter...
Recent breakthroughs in cosmology reveal that a quarter of the Universe is composed of dark matter, ...
AbstractIn this study, we investigate a scenario that dark matter (DM) has only gravitational intera...
International audienceThe existence of cosmological dark matter is in the bedrock of the modern cosm...
We discuss a class of Dark Matter (DM) models that, although inherently strongly coupled, appear wea...