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UPconversion Loop Oscillator Axion Detection experiment: A precision frequency interferometric axion dark matter search with a Cylindrical Microwave Cavity

High Energy Physics - Experiment 2025-06-18 v5 Instrumentation and Detectors

Abstract

First experimental results from a room-temperature table-top phase-sensitive axion haloscope experiment are presented. The technique exploits the axion-photon coupling between two photonic resonator-oscillators excited in a single cavity, allowing low-mass axions to be upconverted to microwave frequencies, acting as a source of frequency modulation on the microwave carriers. This new pathway to axion detection has certain advantages over the traditional haloscope method, particularly in targeting axions below 1 μ\mueV (240 MHz) in energy where high volume magnets are necessary. At the heart of the dual-mode oscillator, a tunable cylindrical microwave cavity supports a pair of orthogonally polarized modes (TM0,2,0\text{TM}_{\text{0,2,0}} and TE0,1,1\text{TE}_{\text{0,1,1}}), which, in general, enables simultaneous sensitivity to axions with masses corresponding to the sum and difference of the microwave frequencies. The results place axion exclusion limits between 7.44 - 19.38 neV, excluding a minimal coupling strength above 3×1033\times 10^{-3} 1/GeV, and between 74.4 - 74.5 μ\mueV, excluding a minimal coupling strength above 10210^{-2} 1/GeV, after a measurement period of two and a half hours. We show that a state-of-the-art frequency-stabilized cryogenic implementation of this technique may achieve competitive limits in a large range of axion-space.

Keywords

Cite

@article{arxiv.1912.07751,
  title  = {UPconversion Loop Oscillator Axion Detection experiment: A precision frequency interferometric axion dark matter search with a Cylindrical Microwave Cavity},
  author = {Catriona A. Thomson and Ben T. McAllister and Maxim Goryachev and Eugene N. Ivanov and Michael E. Tobar},
  journal= {arXiv preprint arXiv:1912.07751},
  year   = {2025}
}

Comments

Erratum attached at the beginning. Body and supplementary material corrected for errors. 17 pages (2 erratum, 4.5 body, 8 supplementary material, 2.5 bibliography), 12 figures (2 erratum, 3 body, 7 supplementary)

R2 v1 2026-06-23T12:47:53.809Z