We study the signal and background that arise in nuclear magnetic resonance searches for axion dark matter, finding key differences with the existing literature. We find that spin-precession instruments are much more sensitive than what has been previously estimated in a sizable range of axion masses, with sensitivity improvement of up to a factor of 100 using a Xe129 sample. This improves the detection prospects for the QCD axion, and we estimate the experimental requirements to reach this motivated target. Our results apply to both the axion electric and magnetic dipole moment operators
Copyright © 2022 The Authors, some rights reservedThe axion is a highly motivated elementary particl...
In this paper analytical expressions are derived to describe the spin motion of a particle in magnet...
A ferromagnetic axion haloscope searches for dark matter in the form of axions by exploiting their i...
A leading direction in the hunt for axion dark-matter is to search for its influence on nuclear spin...
International audienceWe report on a search for ultralow-mass axionlike dark matter by analyzing the...
We report on a search for ultralow-mass axionlike dark matter by analyzing the ratio of the spin-pre...
International audienceUltra-low-mass axions are a viable dark matter candidate and may form a cohere...
Ultra-low-mass axions are a viable dark matter candidate and may form a coherently oscillating class...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
We propose an experiment to search for QCD axion and axionlike-particle dark matter. Nuclei that are...
We propose to search for axion dark matter via the oscillating electricdipole moments that axions in...
The axion is one of the main candidates of dark matter and was originally introduced to solve the st...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
Axions, originally proposed to solve the strong CP problem of quantum chromodynamics, emerge now as ...
Axions are light pseudo-scalar particles originally proposed to explain the strong $CP$ problem in S...
Copyright © 2022 The Authors, some rights reservedThe axion is a highly motivated elementary particl...
In this paper analytical expressions are derived to describe the spin motion of a particle in magnet...
A ferromagnetic axion haloscope searches for dark matter in the form of axions by exploiting their i...
A leading direction in the hunt for axion dark-matter is to search for its influence on nuclear spin...
International audienceWe report on a search for ultralow-mass axionlike dark matter by analyzing the...
We report on a search for ultralow-mass axionlike dark matter by analyzing the ratio of the spin-pre...
International audienceUltra-low-mass axions are a viable dark matter candidate and may form a cohere...
Ultra-low-mass axions are a viable dark matter candidate and may form a coherently oscillating class...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
We propose an experiment to search for QCD axion and axionlike-particle dark matter. Nuclei that are...
We propose to search for axion dark matter via the oscillating electricdipole moments that axions in...
The axion is one of the main candidates of dark matter and was originally introduced to solve the st...
We propose to search for axion dark matter via the oscillating electric dipole moments that axions i...
Axions, originally proposed to solve the strong CP problem of quantum chromodynamics, emerge now as ...
Axions are light pseudo-scalar particles originally proposed to explain the strong $CP$ problem in S...
Copyright © 2022 The Authors, some rights reservedThe axion is a highly motivated elementary particl...
In this paper analytical expressions are derived to describe the spin motion of a particle in magnet...
A ferromagnetic axion haloscope searches for dark matter in the form of axions by exploiting their i...