A hypothetical pseudoscalar particle axion, which is an immediate result of the Peccei-Quinn solution to the strong CP problem, may couple to gluons and lead to an oscillating electric dipole moment (EDM) of fundamental particles. This paper proposes a novel method of probing the axion-induced oscillating EDM in storage rings, using a radio frequency (rf) Wien filter. The Wien filter at the frequency of the sidebands of the axion and g - 2 frequency, f(axion) +/- f(g-2), generates a spin resonance in the presence of an oscillating EDM, as confirmed both by an analytical estimation of the spin equations and independently by simulation. A brief systematic study also shows that this method is unlikely to be limited by Wien filter misalignment ...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
International audienceWe report on a search for ultralow-mass axionlike dark matter by analyzing the...
The Jülich ElectricDipole moment Investigation (JEDI) collaboration at Forschungszentrum Jülich...
The matter-antimatter asymmetry in the universe cannot be explained by the level of predicted CP-vio...
An rf Wien filter (WF) can be used in a storage ring to measure a particle’s electric dipole moment ...
The JEDI Collaboration (Jülich Electric Dipole Moment (EDM) Investigations) is developing tools for ...
The JEDI Collaboration (Jülich Electric Dipole Moment (EDM) Investigations) is developing tools for ...
Based on the notion that the local dark-matter field of axions or axionlike particles (ALPs) in our ...
We propose using the storage ring electric dipole moment (EDM) method to search for the axion dark m...
In this paper analytical expressions are derived to describe the spin motion of a particle in magnet...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
The JEDI Collaboration (Jülich Electric Dipole Moment Investigations) is developing tools for the me...
We propose to search for axion dark matter via the oscillating electricdipole moments that axions in...
The JEDI Collaboration (Jülich Electric Dipole Investigations) aims for a measurement of the electri...
Known CP violating sources in the Standard Model of Particle Physics are not sufficient to explain t...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
International audienceWe report on a search for ultralow-mass axionlike dark matter by analyzing the...
The Jülich ElectricDipole moment Investigation (JEDI) collaboration at Forschungszentrum Jülich...
The matter-antimatter asymmetry in the universe cannot be explained by the level of predicted CP-vio...
An rf Wien filter (WF) can be used in a storage ring to measure a particle’s electric dipole moment ...
The JEDI Collaboration (Jülich Electric Dipole Moment (EDM) Investigations) is developing tools for ...
The JEDI Collaboration (Jülich Electric Dipole Moment (EDM) Investigations) is developing tools for ...
Based on the notion that the local dark-matter field of axions or axionlike particles (ALPs) in our ...
We propose using the storage ring electric dipole moment (EDM) method to search for the axion dark m...
In this paper analytical expressions are derived to describe the spin motion of a particle in magnet...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
The JEDI Collaboration (Jülich Electric Dipole Moment Investigations) is developing tools for the me...
We propose to search for axion dark matter via the oscillating electricdipole moments that axions in...
The JEDI Collaboration (Jülich Electric Dipole Investigations) aims for a measurement of the electri...
Known CP violating sources in the Standard Model of Particle Physics are not sufficient to explain t...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
International audienceWe report on a search for ultralow-mass axionlike dark matter by analyzing the...
The Jülich ElectricDipole moment Investigation (JEDI) collaboration at Forschungszentrum Jülich...