We derive constraints on millicharged dark matter and axionlike particles using pulsar timing and fast radio burst observations. For dark matter particles of charge ϵe, the constraint from time of arrival (TOA) of waves is ϵ/mmilli 10-8 eV-1, for masses mmilli 10-6 eV. For axionlike particles, the polarization of the signals from pulsars yields a bound in the axial coupling g/ma 10-13 GeV-1/(10-22 eV), for ma 10-19 eV. Both bounds scale as (ρ/ρdm)1/2 for fractions of the total dark matter energy density ρdm. We make a precise study of these bounds using TOA from several pulsars, FRB 121102, and polarization measurements of PSR J0437-4715. Our results rule out a new region of the parameter space for these dark matter models
International audienceThe injection of secondary particles produced by Dark Matter (DM) annihilation...
The polarization of photons emitted by astrophysical sources might be altered as they travel through...
Axion dark matter can be converted into photons in the magnetospheres of neutron stars leading to a ...
International audienceVery light pseudoscalar fields, often referred to as axions, are compelling da...
Ultralight axionlike particles (ALPs) are compelling dark matter candidates because of their potenti...
International audienceUltralight axionlike particles (ALPs) are compelling dark matter candidates be...
International audienceWe present a search for axionlike polarization oscillations in the cosmic micr...
Abstract Axion is one of the most popular candidates of the cosmological dark matter. Recent studies...
Talk presented at Kashiwa Dark Matter Symposium 2022 https://2022.kashiwa-darkmatter-symposia.org/sc...
International audienceAxions currently provide the most compelling solution to the strong CP problem...
AbstractAxions currently provide the most compelling solution to the strong CP problem. These partic...
In this work we confront dark matter models to constraints that may be derived from radio synchrotro...
International audienceThe injection of secondary particles produced by Dark Matter (DM) annihilation...
The polarization of photons emitted by astrophysical sources might be altered as they travel through...
Axion dark matter can be converted into photons in the magnetospheres of neutron stars leading to a ...
International audienceVery light pseudoscalar fields, often referred to as axions, are compelling da...
Ultralight axionlike particles (ALPs) are compelling dark matter candidates because of their potenti...
International audienceUltralight axionlike particles (ALPs) are compelling dark matter candidates be...
International audienceWe present a search for axionlike polarization oscillations in the cosmic micr...
Abstract Axion is one of the most popular candidates of the cosmological dark matter. Recent studies...
Talk presented at Kashiwa Dark Matter Symposium 2022 https://2022.kashiwa-darkmatter-symposia.org/sc...
International audienceAxions currently provide the most compelling solution to the strong CP problem...
AbstractAxions currently provide the most compelling solution to the strong CP problem. These partic...
In this work we confront dark matter models to constraints that may be derived from radio synchrotro...
International audienceThe injection of secondary particles produced by Dark Matter (DM) annihilation...
The polarization of photons emitted by astrophysical sources might be altered as they travel through...
Axion dark matter can be converted into photons in the magnetospheres of neutron stars leading to a ...