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Optomechanical Accelerometer Search for Ultralight Dark Matter

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arxiv 2509.12175 v3 pith:JRHXKBD2 submitted 2025-09-15 hep-ex astro-ph.IMphysics.ins-detphysics.opticsquant-ph

Optomechanical Accelerometer Search for Ultralight Dark Matter

classification hep-ex astro-ph.IMphysics.ins-detphysics.opticsquant-ph
keywords cavitydarkmatteroptomechanicalresonantsearchultralightaccelerometer
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Cavity optomechanical systems have recently been proposed as detectors for ultralight dark matter, leveraging their ability to cool and probe mechanical oscillators at the quantum limit. Here we present a resonant search for ultralight dark matter using a cavity optomechanical accelerometer. The detector consists of a cryogenic Si$_3$N$_4$-membrane cavity mounted to a 4 K copper plate, with photothermal tuning used to scan its 39 kHz mechanical resonance. Shot-noise-limited displacement readout and radiation-pressure feedback cooling yield an acceleration sensitivity of $\sim 10\;\text{n}g_0/\sqrt{\text{Hz}}$ over 30 Hz near resonance. The detector's material inhomogeneity gives access to direct vector coupling to the dark-matter field. We conduct a resonant search based on matched-filter statistics, yielding upper bounds consistent with thermal noise and above those set by equivalence principle tests. No signal is observed, but the experiment demonstrates stable, quantum-limited operation and validates a scalable approach to resonant detection. With optimized test masses, lower temperature, and multiplexed arrays, the platform offers a path toward competitive constraints on vector-mediated dark-matter interactions.

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Cited by 1 Pith paper

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  1. Searching for Ultralight Dark Matter with MOLeQuTE: a Massive Optically Levitated Quantum Tabletop Experiment

    hep-ph 2025-11 conditional novelty 6.0

    A proposed optically levitated milligram-scale plate sensor could reach the standard quantum limit and probe new parameter space for ultralight B-L vector dark matter.