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Updated: Aug 15, 2026

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Writing Bragg Gratings in Multicore Fibers
Published on: April 20, 2016
Definitions and statistical characterization of core position errors in multicore fibers
Optics Express
|August 14, 2026
Summary
Determining the reference angle in multicore fiber imaging is crucial. The L4 criterion balances tail suppression and robustness, offering optimal core-position error assessment for quality control.
Area of Science:
- Optical Fiber Technology
- Metrology
- Image Analysis
Background:
- Multicore fiber imaging presents challenges due to rotational offsets, impacting core-position accuracy.
- Accurate core positioning is vital for meeting stringent industry specifications and quality standards.
Purpose of the Study:
- To investigate the impact of reference-angle definitions on core-position errors in multicore fibers.
- To compare different norm minimization criteria (L1, L2, L4, L∞) for optimal reference-angle determination.
Main Methods:
- Formulated reference-angle determination as norm minimization after translation to the cladding-center origin.
- Employed Monte Carlo simulations incorporating Gaussian fabrication perturbations and center-localization noise.
- Evaluated L1, L2, L4, and L∞ criteria based on their performance in minimizing per-core deviations.
Main Results:
- The L1 criterion exhibited the smallest mean error but a heavy upper tail, potentially leading to conservative pass/fail decisions.
- The L∞ criterion effectively suppressed extreme deviations but proved sensitive to noise.
- The L4 criterion demonstrated a favorable balance, offering tail suppression similar to L∞ and robustness comparable to L2.
Conclusions:
- The choice of reference-angle definition significantly influences core-position error assessment in multicore fibers.
- The L4 norm minimization criterion provides a robust and balanced approach for reference-angle determination, enhancing inspection yield and decision-making accuracy.
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