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We explore the axionic dark matter search sensitivity with a narrow-band detection scheme aiming at the axion-photon conversion by the static electric field inside a cylindrical capacitor. An alternating magnetic field signal is induced by…

High Energy Physics - Phenomenology · Physics 2022-05-13 Yu Gao , Yongsheng Huang , Zhengwei Li , Manqi Ruan , Peng Sha , Meiyu Si , Qiaoli Yang

Ultralight bosonic dark matter with masses in the meV range, corresponding to terahertz (THz) Compton frequencies, remains largely unexplored due to the difficulty of achieving both efficient signal conversion and single-photon-sensitive…

High Energy Physics - Phenomenology · Physics 2026-03-25 J. F. Chen , Haokun Fu , Christina Gao , Jing Shu , Geng-Bo Wu , Peiran Yin , Yi-Ming Zhong , Ying Zuo

We propose a resonant electromagnetic detector to search for hidden-photon dark matter over an extensive range of masses. Hidden-photon dark matter can be described as a weakly coupled "hidden electric field," oscillating at a frequency…

High Energy Physics - Phenomenology · Physics 2015-10-14 Saptarshi Chaudhuri , Peter W. Graham , Kent Irwin , Jeremy Mardon , Surjeet Rajendran , Yue Zhao

The resonant cavity system has been widely used to search for the electromagnetic response of dark photons, although its achievable detection sensitivity remains at a relatively low level. In this letter, we propose a feasible approach to…

Optics · Physics 2026-04-28 S. R. He , L. Gao , P. H. Ouyang , H. Zheng , X. N. Feng , L. F. Wei

Recent advances in tabletop quantum sensor technology have enabled searches for nongravitational interactions of dark matter (DM). Traditional axion DM experiments rely on sharp resonance, resulting in extensive scanning time to cover a…

High Energy Physics - Phenomenology · Physics 2025-04-18 Kai Wei , Zitong Xu , Yuxuan He , Xiaolin Ma , Xing Heng , Xiaofei Huang , Wei Quan , Wei Ji , Jia Liu , Xiao-Ping Wang , Dmitry Budker , Jiancheng Fang

Axions and axion-like particles are compelling candidates for ultralight bosonic dark matter, forming coherent oscillating fields that can be probed by experiments known as haloscopes. A broad range of haloscope concepts has been developed,…

The invisible axion is a hypothetical particle that arises from the Peccei-Quinn mechanism proposed to resolve the CP problem in quantum chromodynamics, and is considered one of the most favoured candidates for cold dark matter. Dish…

High Energy Physics - Phenomenology · Physics 2023-09-06 Junu Jeong , Sungwoo Youn , Yannis K. Semertzidis

Based upon a previous axion mass proposal and detection scheme, as well as considering the axion mass ranges suggested by persuasive simulations in recent years, we present a revised axion/ALP search strategy and our calculations,…

High Energy Physics - Experiment · Physics 2026-01-30 Masroor H. S. Bukhari

We consider how superconducting microwave detector technology might be applied to the readout of cavity-axion haloscopes and similar fundamental physics experiments. Expressions for the sensitivity of two detection schemes are derived: 1) a…

Instrumentation and Detectors · Physics 2024-03-21 Christopher N. Thomas , Stafford Withington , David J. Goldie

We present the first results of a search for invisible axion dark matter using a multiple-cell cavity haloscope. This cavity concept was proposed to provide a highly efficient approach to high mass regions compared to the conventional…

High Energy Physics - Experiment · Physics 2020-12-09 Junu Jeong , SungWoo Youn , Sungjae Bae , Jihngeun Kim , Taehyeon Seong , Jihn E Kim , Yannis K. Semertzidis

RADES (Relic Axion Detector Exploratory Setup) is a project with the goal of directly searching for axion dark matter above the $30 \mu$eV scale employing custom-made microwave filters in magnetic dipole fields. Currently RADES is taking…

The axion is a hypothetical particle considered to be the most economical solution to the strong CP problem. It can also be formulated as a compelling component of dark matter. The haloscope, a leading axion detection scheme, relies on the…

Instrumentation and Detectors · Physics 2016-08-17 Ben T. McAllister , Stephen R. Parker , Michael E. Tobar

We propose an approach to search for axion dark matter with a specially designed superconducting radio frequency cavity, targeting axions with masses $m_a \lesssim 10^{-6} \text{ eV}$. Our approach exploits axion-induced transitions between…

Haloscopes, microwave resonant cavities utilized in detecting dark matter axions within powerful static magnetic fields, are pivotal in modern astrophysical research. This paper delves into the realm of cylindrical geometries, investigating…

Instrumentation and Detectors · Physics 2023-10-26 J. M. García-Barceló , A. Díaz-Morcillo , B. Gimeno

A modification of the cavity technique for axion dark matter detection is described in which the cavity is driven with input power instead of being permeated by a static magnetic field. A small fraction of the input power is pumped by the…

High Energy Physics - Phenomenology · Physics 2013-01-22 P. Sikivie

The search for low-mass dark matter (DM) goes in parallel with the identification of new detection channels and the development of suitable detectors. Detection of the resulting small energy depositions is challenging: it requires extremely…

Materials Science · Physics 2023-11-21 Martí Raya-Moreno , Bradley J. Kavanagh , Lourdes Fàbrega , Riccardo Rurali

Cosmological mechanisms that yield ultralight dark matter are insensitive to the intrinsic parity of a bosonic dark matter candidate, but that same quantity plays a crucial role in a direct detection experiment. The modification of…

High Energy Physics - Phenomenology · Physics 2021-09-20 Christopher M. Donohue , Susan Gardner , Wolfgang Korsch

A fast data acquisition (DAQ) system for axion dark matter searches utilizing a microwave resonant cavity, also known as axion haloscope searches, has been developed with a two-channel digitizer that can sample 16-bit amplitudes at rates up…

Instrumentation and Detectors · Physics 2022-05-25 S. Ahn , M. J. Lee , A. K. Yi , B. Yeo , B. R. Ko , Y. K. Semertzidis