Resolution Limits of Resonant Sensors with Duffing Non-Linearity
Tom\'as Manzaneque, Murali K. Ghatkesar, Farbod Alijani, Minxing Xu,, Richard A. Norte, Peter G. Steeneken

TL;DR
This paper investigates how Duffing non-linearity affects the fundamental resolution limits of resonant sensors, revealing conditions where increasing quality factor can enhance resolution, supported by analytical modeling, simulations, and experimental validation.
Contribution
It provides a new analytical model for Duffing resonators' resolution limits and demonstrates that optimizing quality factor can improve sensing resolution under certain conditions.
Findings
Higher quality factors can improve resolution in non-linear resonators.
The analytical model matches numerical simulations and experimental results.
Resolutions surpassing previous limits are experimentally achieved.
Abstract
The resolution of resonant sensors is fundamentally limited by the presence of noise. Thermomechanical noise, intrinsic to the resonator, sets the ultimate sensor performance when all other noise sources have been eliminated. For linear resonators, the sensing resolution can always be further improved by increasing the driving power. However, this trend cannot continue indefinitely, since at sufficiently high driving powers non-linear effects emerge and influence the noise performance. As a consequence, the resonator's non-linear characteristics play an inextricable role in determining its ultimate resolution limits. Recently, several works have studied the characteristic performance of non-linear resonators as sensors, with the counter intuitive conclusion that increasing the quality factor of a resonator does not improve its sensing resolution at the thermomechanical limit. In this…
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Taxonomy
TopicsMechanical and Optical Resonators · Force Microscopy Techniques and Applications · Advanced MEMS and NEMS Technologies
