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Long nanomechanical resonators with circular cross-section

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arxiv 2311.02452 v1 pith:K5EXBYDZ submitted 2023-11-04 physics.ins-det cond-mat.mes-hall

classification physics.ins-detcond-mat.mes-hall
keywords resonatorsnanomechanicaldevicesfabricationnanowirequantumresearchsuspended
verification ladder T0 review T1 audit T2 compute T3 formal
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Fabrication of superconducting nanomechanical resonators for quantum research, detectors and devices traditionally relies on a lithographic process, resulting in oscillators with sharp edges and a suspended length limited to a few 100 micrometres. We report a low-investment top-down approach to fabricating NbTi nanowire resonators with suspended lengths up to several millimetres and diameters down to 100 nanometres. The nanowires possess high critical currents and fields, making them a natural choice for magnetomotive actuation and sensing. This fabrication technique is independent of the substrate material, dimensions and layout and can readily be adapted to fabricate nanowire resonators from any metal or alloy with suitable ductility and yield strength. Our work thus opens access to a new class of nanomechanical devices with applications including microscopic and mesoscopic investigations of quantum fluids, detecting dark matter and fundamental materials research in one-dimensional superconductors in vacuum.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Development of superfluid helium-3 bolometry using nanowire resonators with SQUID readout for the QUEST-DMC experiment

    physics.ins-det 2025-08 conditional novelty 6.0 of 10

    A bolometer made of superfluid helium-3, instrumented with 400 nm nanowire resonators and SQUID readout, was operated at 0.3 mK, with two-wire heat calibration and frequency multiplexing demonstrated.

  2. Dark Matter Attenuation Effects: Sensitivity Ceilings for Spin-Dependent and Spin-Independent Interactions

    hep-ph 2025-02 conditional novelty 5.0 of 10

    For sub-GeV dark matter, using a diffusive random-walk model of atmospheric scattering lowers the projected sensitivity ceiling of the QUEST-DMC detector by about a factor of two compared with the straight-line approximation.

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