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Engineering of Form Factor in Rotationally Symmetric Photonic Cavities for Faster Axion Searches

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arxiv 2201.08488 v1 pith:SSGAGE7F submitted 2022-01-20 physics.ins-det

Engineering of Form Factor in Rotationally Symmetric Photonic Cavities for Faster Axion Searches

classification physics.ins-det
keywords factorformcavitiescavityphotonicaxiondetectorshigher-order
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Form factor can be engineered in photonic cavities such that it dramatically increases the scan speed of axion haloscope detectors. Using higher-order modes of a photonic cavity, we can probe axions at larger mass ranges beyond the reach of current detectors that rely on conventional copper cavities. The main idea is to produce a higher-order mode with longitudinal field distribution that has relatively high amplitude away from both the cavity axis and the cavity walls such that it results in a relatively large form factor and maintains a high-quality factor. The detector scan speed significantly increases as it is proportional to the square of the form factor multiplied by the quality factor.

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