Echo-free quality factor of a multilayer axion haloscope
High Energy Physics - Experiment2024-05-03v1Cosmology and Nongalactic AstrophysicsInstrumentation and Methods for AstrophysicsHigh Energy Physics - Phenomenology
We report a methodology to determine the quality factor (Q) in implementations of the so-called dielectric haloscope, a new concept of wavy dark matter detector equipped with a multilayered resonator. An anechoic chamber enables the observation of the resonance frequency and its amplitude for an unlimited series of layers for the first time, which is conveniently filtered. The frequency-normalized power enhancement measured in a Dark-photons \& Axion-Like particles Interferometer (DALI) prototype is a few hundred per layer over a sweep bandwidth of half a hundred MHz. In light of this result, this scaled-down prototype is sensitive to axions saturating the local dark matter density with a coupling to photons between gaγγ≳10−12 GeV−1 and gaγγ≳ few ×10−14 GeV−1 at frequencies of several dozens of GHz once cooled down to the different working temperatures of the experiment and immersed in magnetic fields ranging from 1 T to 10 T; while the sensitivity of the full-scale DALI is projected at gaγγ≳few×10−15 GeV−1 over the entire 25--250 {\mu}eV range since Q≳104 is expected.
@article{arxiv.2405.01096,
title = {Echo-free quality factor of a multilayer axion haloscope},
author = {Juan F. Hernández-Cabrera and Javier De Miguel and E. Hernández-Suárez and Enrique Joven and H. Lorenzo-Hernández and Chiko Otani and J. Alberto Rubiño-Martín and Konstantin Zioutas},
journal= {arXiv preprint arXiv:2405.01096},
year = {2024}
}