Tuning piezoresistive transduction in nanomechanical resonators by geometrical asymmetries

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Abstract

The effect of geometrical asymmetries on the piezoresistive transduction in suspended double clamped beam nanomechanical resonators is investigated. Tapered silicon nano-beams, fabricated using a fast and flexible prototyping method, are employed to determine how the asymmetry affects the transduced piezoresistive signal for different mechanical resonant modes. This effect is attributed to the modulation of the strain in pre-strained double clamped beams, and it is confirmed by means of finite element simulations.

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Llobet, J., Sansa, M., Lorenzoni, M., Borrisé, X., San Paulo, A., & Pérez-Murano, F. (2015). Tuning piezoresistive transduction in nanomechanical resonators by geometrical asymmetries. Applied Physics Letters, 107(7). https://doi.org/10.1063/1.4928709

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