Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the late decays of other particles. We focus on the case of gravitinos produced in the late decays of sleptons or sneutrinos and assume they are produced in sufficient numbers to constitute all of nonbaryonic dark matter. At leading order, these late decays are two-body and the accompanying energy is electromagnetic. For natural weak-scale parameters, these decays have been shown to satisfy bounds from Big Bang nucleosynthesis and the cosmic microwave background. However, sleptons and sneutrinos may also decay to three-body final states, producing hadronic energy, which is subject to even more stringent nucleosynthesis bounds. We determine the t...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
The gravitino is a promising candidate for cold dark matter. We study cosmological constraints on sc...
Gravitinos and axinos produced in the late decays of other supersymmetric particles are well-motivat...
In supergravity theories, a natural possibility is that neutralinos or sleptons freeze out at their ...
Gravitinos and axinos produced in the late decays of other supersymmetric particles are well-motivat...
We investigate the superWIMP scenario in the framework of supersymmetry, in which the lightest super...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
In supergravity theories, a natural possibility is that neutralinos or sleptons freeze out at their ...
Considering scenarios in which the gravitino is the lightest supersymmetric particle and a charged s...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
The gravitino is a promising candidate for cold dark matter. We study cosmological constraints on sc...
Gravitinos and axinos produced in the late decays of other supersymmetric particles are well-motivat...
In supergravity theories, a natural possibility is that neutralinos or sleptons freeze out at their ...
Gravitinos and axinos produced in the late decays of other supersymmetric particles are well-motivat...
We investigate the superWIMP scenario in the framework of supersymmetry, in which the lightest super...
Dark matter may be composed of superWIMPs, superweakly-interacting massive particles produced in the...
In supergravity theories, a natural possibility is that neutralinos or sleptons freeze out at their ...
Considering scenarios in which the gravitino is the lightest supersymmetric particle and a charged s...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...
International audienceWe review our recent results on dark matter from Starobinsky supergravity. In ...