In this work we revisit five different point sources within or behind galaxy clusters in order to constrain the coupling constant between axion-like particles (ALPs) and photons. We use three distinct machine learning (ML) techniques and compare our results with a standard χ2 analysis. For the first time we apply approximate Bayesian computation to searches for ALPs and find consistently good performance across ML classifiers. Further, we apply more realistic 3D magnetic field simulations of galaxy clusters and compare our results with previously used 1D simulations. We find constraints on the ALP-photon coupling at the level of state-of-the-art bounds with gaγγ ≲ 0.6 × 10−12 GeV−1, hence improving on previous constraints obtained from the ...
We extend previous searches for X-ray spectral modulations induced by ALP-photon conversion to a var...
The interaction of axion-like particles (ALPs) with two photons enable the oscillations between phot...
Axionlike particles (ALPs) are hypothetical light (sub-eV) bosons predicted in some extensions of th...
In this work, we revisit five different point sources within or behind galaxy clusters to constrain ...
Axion-Like Particles (ALPs) are a very well-motivated class of Beyond the Standard Model particles. ...
If axion-like particles (ALPs) exist, photons can convert to ALPs on passage through regions contain...
Coupling of axion-like particles (ALPs) to photons in the presence of background magnetic field affe...
The Standard Model of particle physics has enjoyed unprecedented success in predicting experimental ...
We update the globular cluster bound on massive ( ma up to a few 100 keV) axion-like particles (ALP)...
X-ray observations of bright AGNs in or behind galaxy clusters offer unique capabilities to constrai...
Axion-like particles (ALPs) are predicted by several Beyond the Standard Model theories, in particul...
It has been recently claimed by two different groups that the spectral modulation observed in gamma ...
Galaxy clusters contain large magnetic fields that make them excellent targets to search for ultrali...
In this thesis I study astrophysical and cosmological effects of axion-like particles (ALPs). ALPs ...
We extend previous searches for X-ray spectral modulations induced by ALP-photon conversion to a var...
The interaction of axion-like particles (ALPs) with two photons enable the oscillations between phot...
Axionlike particles (ALPs) are hypothetical light (sub-eV) bosons predicted in some extensions of th...
In this work, we revisit five different point sources within or behind galaxy clusters to constrain ...
Axion-Like Particles (ALPs) are a very well-motivated class of Beyond the Standard Model particles. ...
If axion-like particles (ALPs) exist, photons can convert to ALPs on passage through regions contain...
Coupling of axion-like particles (ALPs) to photons in the presence of background magnetic field affe...
The Standard Model of particle physics has enjoyed unprecedented success in predicting experimental ...
We update the globular cluster bound on massive ( ma up to a few 100 keV) axion-like particles (ALP)...
X-ray observations of bright AGNs in or behind galaxy clusters offer unique capabilities to constrai...
Axion-like particles (ALPs) are predicted by several Beyond the Standard Model theories, in particul...
It has been recently claimed by two different groups that the spectral modulation observed in gamma ...
Galaxy clusters contain large magnetic fields that make them excellent targets to search for ultrali...
In this thesis I study astrophysical and cosmological effects of axion-like particles (ALPs). ALPs ...
We extend previous searches for X-ray spectral modulations induced by ALP-photon conversion to a var...
The interaction of axion-like particles (ALPs) with two photons enable the oscillations between phot...
Axionlike particles (ALPs) are hypothetical light (sub-eV) bosons predicted in some extensions of th...