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Titlebook: Microwave Cavities and Detectors for Axion Research; Proceedings of the 3 Gianpaolo Carosi,Gray Rybka Conference proceedings 2020 This is a

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,CAPP-PACE Experiment with a Target Mass Range Around 10 μeV,etector is equipped with an 8 T superconducting magnet and employs a dilution refrigerator that lowers the physical temperature of a high Q-factor split-type cavity to less than 45 mK. The frequency tuning system utilizes piezoelectric actuators with interchangeable sapphire and copper rods. The fee
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Operation of a Ferromagnetic Axion Haloscope,d, the signal is a magnetization oscillation of a sample. To detect it, the material is placed in a resonant cavity and polarized with a static magnetic field. Here we describe the operation of such a device, with a resonance frequency of 14 GHz, corresponding to an axion mass . = 58 μeV. Eventually
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Axion Dark Matter Search at IBS/CAPP, The Center for Axion and Precision Physics Research (CAPP) of the Institute for Basic Science (IBS) in South Korea has completed the construction of the infrastructure for axion dark matter search experiments. Multiple experiments are currently under preparation for parallel operation targeting at
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