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Axion haloscopes provide a leading experimental approach to detecting QCD axion dark matter through resonant axion-photon conversion in microwave cavities. Extending haloscope sensitivity to low axion masses remains challenging due to the…

Instrumentation and Detectors · Physics 2026-01-29 Raj Aryan Singh , Paige Rose Taylor , Elrina Hartmann , Geoffrey Brooks , Ben T. McAllister

The axion haloscope is the currently most sensitive method to probe the vanishingly small coupling of this prominent Dark Matter candidate to photons. To scan a sizeable axion Dark Matter parameter space, the cavities that make up the…

The microwave cavity experiment is the most sensitive way of looking for axions in the 0.1-10 GHz range, corresponding to masses of 0.5 - 40 $\mu$eV. The particular challenge for frequencies greater than 5 GHz is designing a cavity with a…

Instrumentation and Methods for Astrophysics · Physics 2021-03-11 Maria Simanovskaia , Alex Droster , Heather Jackson , Isabella Urdinaran , Karl van Bibber

In an earlier paper, a new class of thin-shell cavities were proposed to evade the steep frequency scaling of conventional axion haloscopes. In this follow-up work, we see that a generalized conic geometry enables robust frequency-tuning…

Instrumentation and Detectors · Physics 2021-02-17 Chao-Lin Kuo

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

Haloscopes are resonant cavities that serve as detectors of dark matter axions when they are immersed in a strong static magnetic field. In order to increase the volume and improve its introduction within dipole or solenoid magnets for…

In the search for axion dark matter, the cavity-based haloscope offers the most sensitive approach to the theoretically interesting models in the microwave region. However, experimental searches have been limited to relatively low masses up…

High Energy Physics - Experiment · Physics 2023-01-25 Sungjae Bae , SungWoo Youn , Junu Jeong

In an effort to extend the usefulness of microwave cavity detectors to higher axion masses, above ~8 $\mu$eV (~2 GHz), a numerical trade study of cavities was conducted to investigate the merit of using variable periodic post arrays and…

Instrumentation and Detectors · Physics 2016-03-24 I. Stern , A. A. Chisholm , J. Hoskins , P. Sikivie , N. S. Sullivan , D. B. Tanner , G. Carosi , K. van Bibber

In the search for axionic Dark Matter, the high frequency part of the QCD axion parameter space is favored, as indicated by both cosmological and astrophysical arguments and recent indications from lattice QCD calculations. To extend the…

The haloscope is one of the most sensitive approaches to the QCD axion physics within the region where the axion is considered to be a dark matter candidate. Current experimental sensitivities, which rely on the lowest fundamental TM010…

Instrumentation and Detectors · Physics 2020-04-22 Jinsu Kim , SungWoo Youn , Junu Jeong , Woohyun Chung , Ohjoon Kwon , Yannis K. Semertzidis

The axion offers a well-motivated solution to two fundamental questions in modern physics: the strong CP problem and the dark matter mystery. Cavity haloscopes, exploiting resonant enhancement of photon signals, provide the most sensitive…

Instrumentation and Detectors · Physics 2024-06-04 SungWoo Youn , Junu Jeong , Yannis K. Semertzidis

Axions are hypothetical particles that provide a compelling solution to two major mysteries in modern physics: the strong CP problem and the nature of dark matter. The plasma haloscope has been proposed as a promising approach for probing…

High Energy Physics - Experiment · Physics 2026-02-25 Jacob Lindahl , Rustam Balafendiev , Gagandeep Kaur , Gaganpreet Singh , Andrea Gallo Rosso , Jan Conrad , Jon E. Gudmundsson , Junu Jeong

We propose a new haloscope geometry that can arbitrarily increase the resonator volume for a given target axion mass. This geometry consists of closely packed, overlapping coaxial cavities operating as a single resonator. While the resonant…

High Energy Physics - Experiment · Physics 2024-04-11 Matthew O. Withers , Chao-Lin Kuo

High-coherence, fault-tolerant and scalable quantum computing architectures with unprecedented long coherence times, faster gates, low losses and low bit-flip errors may be one of the only ways forward to achieve the true quantum advantage.…

Quantum Physics · Physics 2026-05-14 Masroor H. S. Bukhari

The dark photon is a well-motivated candidate of dark matter due to its potential to open the window of new physics beyond the Standard Model. A fundamental mass-range-sensitivity dilemma is always haunting the dark photon searching…

High Energy Physics - Phenomenology · Physics 2025-03-25 Runqi Kang , Qingqin Hu , Xiao Cai , Wenlong Yu , Jingwei Zhou , Xing Rong , Jiangfeng Du

The cavity haloscope provides a highly sensitive method to search for dark matter axions in the microwave regime. Experimental attempts to enhance the sensitivity have focused on improving major aspects, such as producing strong magnetic…

High Energy Physics - Experiment · Physics 2022-06-01 Junu Jeong , SungWoo Youn , Sungjae Bae , Dongok Kim , Younggeun Kim , Yannis K. Semertzidis

The cavity haloscope technique has been the most successful approach to date in searching for axion dark matter, owing to a confluence of factors at the GHz scale including the macroscopic size of the axion-to-photon converting cavity…

High Energy Physics - Experiment · Physics 2026-01-30 Erik W. Lentz , Christian R. Boutan , Matthew S. Taubman , Kevin L. Gervais

Microwave cavities used in axion haloscope experiments typically employ a tuning rod as a means to widen the range of resonance frequencies at which it is sensitive to axion-to-photon conversion. A realistic tuning mechanism requires a gap…

High Energy Physics - Experiment · Physics 2025-06-12 Byeong Rok Ko , Andrew K. Yi

Current axion detection limits neglect the relevance of the relative velocity between the axion field and the detectors. However, this aspect can lead to a daily modulation of the detected axion signal. In this work, we calculate the…

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
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