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Updated: Mar 19, 2026

A Random-displacement Measurement by Combining a Magnetic Scale and Two Fiber Bragg Gratings
Published on: September 30, 2019
High-frequency optical fiber vibration sensing system for micro-nano displacement measurement
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This paper presents a fiber Fabry-Perot (F-P) cavity-based method for high-frequency micro-nano vibration displacement sensing, which can be integrated for high-frequency acoustic atomic force measurement. The F-P cavity is formed between a flat-ended fiber and the device under test. A local linear operating region of a single F-P interference fringe, corresponding to a phase variation of approximately 2π/3, is exploited for displacement calibration and demodulation. A displacement sensitivity of 37.804 mV/µm, yielding a displacement resolution of 0.089pm/√Hz is achieved. The experiments demonstrate that the proposed system can detect a displacement of 1.08 nm @ 72.5 MHz, which provides a critical dynamic displacement sensing capability for accurate force-distance curve analysis and high-frequency micro-nano force measurements.

