Waveguide-integrated chip-scale optomechanical magnetometer

  • Gotardo F
  • Carey B
  • Greenall H
  • et al.
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Abstract

Optomechanical magnetometers enable highly sensitive magnetic field sensing. However, all such magnetometers to date have been optically excited and read-out either via free space or a tapered optical fiber. This limits their scalability and integrability, and ultimately their range of applications. Here, we present an optomechanical magnetometer that is excited and read-out via a suspended optical waveguide fabricated on the same silicon chip as the magnetometer. Moreover, we demonstrate that thermomechanical noise limited sensitivity is possible using portable electronics and laser. The magnetometer employs a silica microdisk resonator selectively sputtered with a magnetostrictive film of galfenol (FeGa) which induces a resonant frequency shift in response to an external magnetic field. Experimental results reveal the retention of high quality-factor optical whispering gallery mode resonances whilst also demonstrating high sensitivity and dynamic range in ambient conditions. The use of off-the-shelf portable electronics without compromising sensor performance demonstrates promise for applications.

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Gotardo, F., Carey, B. J., Greenall, H., Harris, G. I., Romero, E., Bulla, D., … Bowen, W. P. (2023). Waveguide-integrated chip-scale optomechanical magnetometer. Optics Express, 31(23), 37663. https://doi.org/10.1364/oe.501960

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