Abstract As a follow up of the seminal work by Guiot, Borquez, Deur, and Werner on “Graviballs and Dark Matter”, we explicitly show that in string theory, local and nonlocal higher derivative theories, as well as general asymptotically-free or finite theories, gravitationally interacting bound states can form when the energy is larger than the Planck energy. On the other hand, in higher derivative or nonlocal theories with interaction governed by a dimensionless or a dimensionful coupling constant, the bound states form when the energy is smaller than the Planck energy. Such bound states are allowed because of the softness of the scattering amplitudes in the ultraviolet region. Indeed, in such theories, the potential is finite while the for...
If dark matter consists of stable, nonrelativistic, purely gravitating subatomic particles, then inh...
We study cosmological constraints on dark pure Yang-Mills sectors. Dark glueballs are overproduced f...
We conjecture a general upper bound on the strength of gravity relative to gauge forces in quantum g...
As a follow up of the seminal work by Guiot, Borquez, Deur, and Werner on "Graviballs and Dark Matte...
While the Standard Model of particle physics has undoubtedly been an experimental success, several q...
International audienceWe investigate the possible existence of graviballs, a system of bound gravito...
If dark matter couples directly to a light force mediator, then it may form bound states in the earl...
A new dark sector consisting of a pure non-abelian gauge theory has no renormalizable interaction wi...
The formation of meta-stable dark matter bound states in coannihilating scenarios could efficiently ...
The formation of meta-stable dark matter bound states in coannihilating scenarios could efficiently ...
We investigate the possibility of a dark energy universe emerging from an action with higher-order s...
We consider various candidates for Dark Energy, motivated by string theory. Several no-go theorems p...
We present generic formulæ for computing how Sommerfeld corrections together with bound-state format...
In this article, we propose different background models of extended theories of gravity, which are m...
We study cosmological constraints on dark pure Yang-Mills sectors. Dark glueballs are overproduced f...
If dark matter consists of stable, nonrelativistic, purely gravitating subatomic particles, then inh...
We study cosmological constraints on dark pure Yang-Mills sectors. Dark glueballs are overproduced f...
We conjecture a general upper bound on the strength of gravity relative to gauge forces in quantum g...
As a follow up of the seminal work by Guiot, Borquez, Deur, and Werner on "Graviballs and Dark Matte...
While the Standard Model of particle physics has undoubtedly been an experimental success, several q...
International audienceWe investigate the possible existence of graviballs, a system of bound gravito...
If dark matter couples directly to a light force mediator, then it may form bound states in the earl...
A new dark sector consisting of a pure non-abelian gauge theory has no renormalizable interaction wi...
The formation of meta-stable dark matter bound states in coannihilating scenarios could efficiently ...
The formation of meta-stable dark matter bound states in coannihilating scenarios could efficiently ...
We investigate the possibility of a dark energy universe emerging from an action with higher-order s...
We consider various candidates for Dark Energy, motivated by string theory. Several no-go theorems p...
We present generic formulæ for computing how Sommerfeld corrections together with bound-state format...
In this article, we propose different background models of extended theories of gravity, which are m...
We study cosmological constraints on dark pure Yang-Mills sectors. Dark glueballs are overproduced f...
If dark matter consists of stable, nonrelativistic, purely gravitating subatomic particles, then inh...
We study cosmological constraints on dark pure Yang-Mills sectors. Dark glueballs are overproduced f...
We conjecture a general upper bound on the strength of gravity relative to gauge forces in quantum g...