If dark matter couples directly to a light force mediator, then it may form bound states in the early universe and in the non-relativistic environment of haloes today. In this work, we establish a field-theoretic framework for the computation of bound-state formation cross-sections, de-excitation and decay rates, in theories with long-range interactions. Using this formalism, we carry out specific computations for scalar particles interacting either via a light scalar or vector mediator. At low relative velocities of the interacting particles, the formation of bound states is enhanced by the Sommerfeld effect. For particle-antiparticle pairs, we show that bound-state formation can be faster than annihilation into radiation in the regime whe...
We investigate dark matter bound-state formation and its implication for indirect-detection experime...
Abstract As a follow up of the seminal work by Guiot, Borquez, Deur, and Werner on “Graviballs and D...
Abstract In order to predict the cosmological abundance of dark matter, an estimation of particle ra...
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 ...
The thermal decoupling description of dark matter (DM) and co-annihilating partners is reconsidered....
The formation of stable or meta-stable bound states can dramatically affect the phenomenology of dar...
We present generic formulæ for computing how Sommerfeld corrections together with bound-state format...
International audienceWe compute the cross-sections for the radiative capture of non-relativistic pa...
Abstract If dark matter (DM) couples to a force carrier that is much lighter than itself, then it ma...
While the Standard Model of particle physics has undoubtedly been an experimental success, several q...
We present generic formulæ for computing how Sommerfeld corrections together with bound-state forma...
Traditional computations of the dark matter (DM) relic abundance, for models where attractive self-i...
International audienceWe calculate the cross-sections for the radiative formation of bound states by...
Abstract It has been recently demonstrated that the 125 GeV Higgs boson can mediate a long-range for...
We investigate dark matter bound-state formation and its implication for indirect-detection experime...
Abstract As a follow up of the seminal work by Guiot, Borquez, Deur, and Werner on “Graviballs and D...
Abstract In order to predict the cosmological abundance of dark matter, an estimation of particle ra...
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 ...
The thermal decoupling description of dark matter (DM) and co-annihilating partners is reconsidered....
The formation of stable or meta-stable bound states can dramatically affect the phenomenology of dar...
We present generic formulæ for computing how Sommerfeld corrections together with bound-state format...
International audienceWe compute the cross-sections for the radiative capture of non-relativistic pa...
Abstract If dark matter (DM) couples to a force carrier that is much lighter than itself, then it ma...
While the Standard Model of particle physics has undoubtedly been an experimental success, several q...
We present generic formulæ for computing how Sommerfeld corrections together with bound-state forma...
Traditional computations of the dark matter (DM) relic abundance, for models where attractive self-i...
International audienceWe calculate the cross-sections for the radiative formation of bound states by...
Abstract It has been recently demonstrated that the 125 GeV Higgs boson can mediate a long-range for...
We investigate dark matter bound-state formation and its implication for indirect-detection experime...
Abstract As a follow up of the seminal work by Guiot, Borquez, Deur, and Werner on “Graviballs and D...
Abstract In order to predict the cosmological abundance of dark matter, an estimation of particle ra...