The hitherto unprecedented angular resolution of the Event Horizon Telescope (EHT) has created exciting opportunities in the search for new physics. Recently, the linear polarization of radiation emitted near the supermassive black hole M87$^\star$ was measured on four separate days, precisely enabling tests of the existence of a dense axion cloud produced by a spinning black hole. The presence of an axion cloud leads to a frequency-independent oscillation in the electric vector position angle (EVPA) of this linear polarization. For a nearly face-on M87$^\star$, this oscillation in the EVPA appears as a propagating wave along the photon ring. In this paper, we leverage the azimuthal distribution of EVPA measured by the EHT to study the axio...
If dark matter is composed of axions, then axion stars form in the cores of dark matter halos. These...
We show that the parameter space of axion-like particles can be severly constrained using high-preci...
International audienceUltralight axionlike particles (ALPs) are compelling dark matter candidates be...
Black holes can amplify incoming bosonic waves via rotational superradiance, inducing bound states o...
With high spatial resolution, polarimetric imaging of a supermassive black hole, like M87$^\star$ or...
Polarization measurements of thermal radiation from magnetic white dwarf (MWD) stars have been propo...
Polarization measurements of thermal radiation from magnetic white dwarf (MWD) stars have been propo...
Very light pseudoscalar fields, often referred to as axions, are compelling dark matter candidates a...
Ultralight axionlike particles (ALPs) are compelling dark matter candidates because of their potenti...
International audienceVery light pseudoscalar fields, often referred to as axions, are compelling da...
The polarization of photons emitted by astrophysical sources might be altered as they travel through...
An axion cloud surrounding a supermassive black hole can be naturally produced through the superradi...
Event Horizon Telescope (EHT) observations at 230 GHz have now imaged polarized emission around the ...
In 2017 April, the Event Horizon Telescope (EHT) observed the near-horizon region around the superma...
An axion cloud surrounding a supermassive black hole can be naturally produced through the superradi...
If dark matter is composed of axions, then axion stars form in the cores of dark matter halos. These...
We show that the parameter space of axion-like particles can be severly constrained using high-preci...
International audienceUltralight axionlike particles (ALPs) are compelling dark matter candidates be...
Black holes can amplify incoming bosonic waves via rotational superradiance, inducing bound states o...
With high spatial resolution, polarimetric imaging of a supermassive black hole, like M87$^\star$ or...
Polarization measurements of thermal radiation from magnetic white dwarf (MWD) stars have been propo...
Polarization measurements of thermal radiation from magnetic white dwarf (MWD) stars have been propo...
Very light pseudoscalar fields, often referred to as axions, are compelling dark matter candidates a...
Ultralight axionlike particles (ALPs) are compelling dark matter candidates because of their potenti...
International audienceVery light pseudoscalar fields, often referred to as axions, are compelling da...
The polarization of photons emitted by astrophysical sources might be altered as they travel through...
An axion cloud surrounding a supermassive black hole can be naturally produced through the superradi...
Event Horizon Telescope (EHT) observations at 230 GHz have now imaged polarized emission around the ...
In 2017 April, the Event Horizon Telescope (EHT) observed the near-horizon region around the superma...
An axion cloud surrounding a supermassive black hole can be naturally produced through the superradi...
If dark matter is composed of axions, then axion stars form in the cores of dark matter halos. These...
We show that the parameter space of axion-like particles can be severly constrained using high-preci...
International audienceUltralight axionlike particles (ALPs) are compelling dark matter candidates be...