BICEP / Keck XII: Constraints on axion-like polarization oscillations in the cosmic microwave background
BICEP/Keck Collaboration: P. A. R. Ade, Z. Ahmed, M. Amiri, D., Barkats, R. Basu Thakur, C. A. Bischoff, J. J. Bock, H. Boenish, E. Bullock,, V. Buza, J. R. Cheshire IV, J. Connors, J. Cornelison, M. Crumrine, A., Cukierman, M. Dierickx, L. Duband, S. Fatigoni, J. P. Filippini

TL;DR
This paper searches for axion-like dark matter through polarization oscillations in the CMB, setting new upper limits on axion-photon coupling and demonstrating a method applicable to future experiments.
Contribution
Developed a novel technique to detect axion-induced polarization oscillations in the CMB and applied it to Keck Array data to set constraints on axion-like particles.
Findings
No significant polarization oscillation signals detected.
Set upper limits on axion-photon coupling for specific mass ranges.
Method can be applied to other CMB datasets for improved constraints.
Abstract
We present a search for axion-like polarization oscillations in the cosmic microwave background (CMB) with observations from the Keck Array. A local axion field induces an all-sky, temporally sinusoidal rotation of CMB polarization. A CMB polarimeter can thus function as a direct-detection experiment for axion-like dark matter. We develop techniques to extract an oscillation signal. Many elements of the method are generic to CMB polarimetry experiments and can be adapted for other datasets. As a first demonstration, we process data from the 2012 observing season to set upper limits on the axion-photon coupling constant in the mass range -, which corresponds to oscillation periods on the order of hours to months. We find no statistically significant deviations from the background model. For periods larger than (mass $m < 4.8 \times…
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