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Updated: Aug 15, 2026

Fabrication and Testing of Microfluidic Optomechanical Oscillators
Published on: May 29, 2014
Wavelength drift suppression in high-precision fiber optic spectrometers based on torsional-distortion-type chaotic
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To address the issue of wavelength drift caused by non-uniform light field distribution in high-resolution fiber spectrometers, this paper proposes a chaotic waveguide scheme based on a "double-fiber helical twist" non-axisymmetric topological structure. The effectiveness of this structure in homogenizing the light field was verified through a combination of simulations and experiments. The results demonstrate that this scheme can reconstruct an extremely eccentric light field into a uniform super-Gaussian distribution. Under perturbations such as optical axis misalignment, wavelength drift is successfully suppressed within the limit of resolution (<0.1 nm), and the spot center of mass remains stable. This confirms that the deterministic geometric structure scheme possesses excellent robustness, providing an efficient, passive, and engineered solution for high-precision spectral analysis.
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