File:PhysRevLett.123.141802.pdf
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DescriptionPhysRevLett.123.141802.pdf |
English: We propose a new strategy for searching for dark matter axions using tunable cryogenic plasmas. Unlike current experiments, which repair the mismatch between axion and photon masses by breaking translational invariance (cavity and dielectric haloscopes), a plasma haloscope enables resonant conversion by matching the axion mass to a plasma frequency. A key advantage is that the plasma frequency is unrelated to the physical size of the device, allowing large conversion volumes. We identify wire metamaterials as a promising candidate plasma, wherein the plasma frequency can be tuned by varying the interwire spacing. For realistic experimental sizes, we estimate competitive sensitivity for axion masses of 35–400 μeV, at least. |
Date | |
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https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.123.141802 https://doi.org/10.1103/PhysRevLett.123.141802 |
Author | Matthew Lawson, Alexander J. Millar, Matteo Pancaldi, Edoardo Vitagliano, and Frank Wilczek |
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Short title | Tunable Axion Plasma Haloscopes |
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Image title | doi:10.1103/PhysRevLett.123.141802 url:https://doi.org/10.1103/PhysRevLett.123.141802 |
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Software used | Published by the American Physical Society |
Conversion program | Acrobat Distiller 10.1.16 (Windows) |
Encrypted | no |
Page size | 612 x 792 pts (letter) |
Version of PDF format | 1.4 |
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