We constrain the coupling between axionlike particles (ALPs) and photons, measured with the superconducting resonant detection circuit of a cryogenic Penning trap. By searching the noise spectrum of our fixed-frequency resonant circuit for peaks caused by dark matter ALPs converting into photons in the strong magnetic field of the Penning-trap magnet, we are able to constrain the coupling of ALPs with masses around 2.7906–2.7914 neV/c2 to gaγ 1×10-11 GeV-1. This is more than one order of magnitude lower than the best laboratory haloscope and approximately 5 times lower than the CERN axion solar telescope (CAST), setting limits in a mass and coupling range which is not constrained by astrophysical observations. Our approach can be extende...
The CERN Axion Solar Telescope (CAST) experiment at CERN searches for solar axions with energies in ...
We have searched for solar axions or similar particles that couple to two photons by using the CERN ...
International audienceWe study the discovery potential of axion-like particles (ALP), pseudo-scalars...
We constrain the coupling between axionlike particles (ALPs) and photons, measured with the supercon...
We report on a search for dark matter axion-like particles (ALPs) using a Ramsey-type apparatus for ...
Despite the great successes achieved by the Standard Model (SM) in explaining and predicting the beh...
Hypothetical low-mass particles, such as axions, provide a compelling explanation for the dark matte...
Astrophysical observations indicate that there is roughly five times more dark matter in the Univers...
The strong CP problem, the existence of dark matter, the transparency of interstellar space to highl...
Several laboratory experiments have published limits on axionlike particles (ALPs) with feeble coupl...
The Standard Model of particle physics has enjoyed unprecedented success in predicting experimental ...
Light pseudoscalars interacting pre-dominantly with Standard Model gauge bosons (so-called axion-lik...
Axion-Like Particles (ALPs) are a very well-motivated class of Beyond the Standard Model particles. ...
We present an analysis of electron recoils in cryogenic germanium detectors operated during the Supe...
Hypothetical low-mass particles, such as axions, provide a compelling explanation for the dark matte...
The CERN Axion Solar Telescope (CAST) experiment at CERN searches for solar axions with energies in ...
We have searched for solar axions or similar particles that couple to two photons by using the CERN ...
International audienceWe study the discovery potential of axion-like particles (ALP), pseudo-scalars...
We constrain the coupling between axionlike particles (ALPs) and photons, measured with the supercon...
We report on a search for dark matter axion-like particles (ALPs) using a Ramsey-type apparatus for ...
Despite the great successes achieved by the Standard Model (SM) in explaining and predicting the beh...
Hypothetical low-mass particles, such as axions, provide a compelling explanation for the dark matte...
Astrophysical observations indicate that there is roughly five times more dark matter in the Univers...
The strong CP problem, the existence of dark matter, the transparency of interstellar space to highl...
Several laboratory experiments have published limits on axionlike particles (ALPs) with feeble coupl...
The Standard Model of particle physics has enjoyed unprecedented success in predicting experimental ...
Light pseudoscalars interacting pre-dominantly with Standard Model gauge bosons (so-called axion-lik...
Axion-Like Particles (ALPs) are a very well-motivated class of Beyond the Standard Model particles. ...
We present an analysis of electron recoils in cryogenic germanium detectors operated during the Supe...
Hypothetical low-mass particles, such as axions, provide a compelling explanation for the dark matte...
The CERN Axion Solar Telescope (CAST) experiment at CERN searches for solar axions with energies in ...
We have searched for solar axions or similar particles that couple to two photons by using the CERN ...
International audienceWe study the discovery potential of axion-like particles (ALP), pseudo-scalars...