High-frequency torsional motion transduction using optomechanical coupled oscillators

Author:

Kaviani Hamidreza12,Behera Bishnupada12,Hajisalem Ghazal12ORCID,Luiz Gustavo de Oliveira3ORCID,Lake David P.12ORCID,Barclay Paul E.12ORCID

Affiliation:

1. University of Calgary

2. National Research Council of Canada Nanotechnology Research Centre

3. University of Alberta

Abstract

Using light to measure an object’s motion is central to operating mechanical sensors that probe forces and fields. Cavity optomechanical systems embed mechanical resonators inside optical resonators. This enhances the sensitivity of optomechanical measurements, but only if the mechanical resonator does not spoil the properties of the optical cavity. For example, cavity optomechanical detection of resonators made from optically absorbing materials, or whose geometry does not possess suitable spatial symmetry, is challenging. Here we demonstrate a system that overcomes challenges in measuring high-frequency twisting motion of a nanodisk by converting them to vibrations of a photonic crystal cavity. Optomechanical readout of the cavity then enables measurement of the nanodisk’s torsional resonances with sensitivity 5.1 × 10 21 1.2 × 10 19 N m / H z for a mechanical frequency range of 5–800 MHz. The nanodisk can be outfitted with magnetic nanostructures or metasurfaces without affecting the optical properties of the cavity, making the system suitable for torque magnetometry and structured light sensing.

Funder

Natural Sciences and Engineering Research Council of Canada

Alberta Innovates—Technology Futures

Canadian Foundation for Innovation

National Research Council Canada

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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