Axion-like particles with masses in the keV-GeV range have a profound impact on the cosmological evolution of our Universe, in particular on the abundance of light elements produced during Big Bang Nucleosynthesis. The resulting limits are complementary to searches in the laboratory and provide valuable additional information regarding the validity of a given point in parameter space. A potential drawback is that altering the cosmological history may potentially weaken or even fully invalidate these bounds. The main objective of this article is therefore to evaluate the robustness of cosmological constraints on axion-like particles in the keV–GeV region, allowing for various additional effects which may weaken the bounds of the standard sce...
We present the cosmological bounds on the thermal axion mass in an extended cosmological scenario in...
International audienceIn the primordial Universe the axion particles, which solve in an elegant way ...
The existence of dark matter is a well established fact both due to galaxy rotation curves and also ...
Axion-like particles with masses in the keV-GeV range have a profound impact on the cosmological evo...
Cosmological precision data can be used to set very strict constraints on Axions and Axion-like part...
Axions with mass greater than 0.7 eV are excluded by cosmological precision data because they provid...
Axion-like particles (ALPs) decaying into photons are known to affect a wide range of astrophysical ...
Axion-like particles (ALPs) decaying into photons are known to affect a wide range of astrophysical ...
We update the globular cluster bound on massive ( ma up to a few 100 keV) axion-like particles (ALP)...
We constrain the coupling of thermally-produced axion-like particles (here axions) with photons and ...
We review current cosmological constraints on the axion. We describe the basic mechanisms by which a...
Relic thermal axions could play the role of an extra hot dark matter component in cosmological struc...
Searches for dark matter decaying into photons constrain its lifetime to be many orders of magnitude...
International audienceAmong the various possibilities to probe the theory behind the recent accelera...
Many extensions of the Standard Model predict large numbers of additional unstable particles whose d...
We present the cosmological bounds on the thermal axion mass in an extended cosmological scenario in...
International audienceIn the primordial Universe the axion particles, which solve in an elegant way ...
The existence of dark matter is a well established fact both due to galaxy rotation curves and also ...
Axion-like particles with masses in the keV-GeV range have a profound impact on the cosmological evo...
Cosmological precision data can be used to set very strict constraints on Axions and Axion-like part...
Axions with mass greater than 0.7 eV are excluded by cosmological precision data because they provid...
Axion-like particles (ALPs) decaying into photons are known to affect a wide range of astrophysical ...
Axion-like particles (ALPs) decaying into photons are known to affect a wide range of astrophysical ...
We update the globular cluster bound on massive ( ma up to a few 100 keV) axion-like particles (ALP)...
We constrain the coupling of thermally-produced axion-like particles (here axions) with photons and ...
We review current cosmological constraints on the axion. We describe the basic mechanisms by which a...
Relic thermal axions could play the role of an extra hot dark matter component in cosmological struc...
Searches for dark matter decaying into photons constrain its lifetime to be many orders of magnitude...
International audienceAmong the various possibilities to probe the theory behind the recent accelera...
Many extensions of the Standard Model predict large numbers of additional unstable particles whose d...
We present the cosmological bounds on the thermal axion mass in an extended cosmological scenario in...
International audienceIn the primordial Universe the axion particles, which solve in an elegant way ...
The existence of dark matter is a well established fact both due to galaxy rotation curves and also ...