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Propagation constant-based diameter measurement technique for a submicrometer-scale optical fiber
Optics Letters
|May 15, 2024
Summary
This study introduces a new method to precisely measure submicrometer optical fiber diameter using standing-wave near-field light. The technique achieves high accuracy, crucial for understanding fiber physical properties.
Area of Science:
- Optics and Photonics
- Materials Science
Background:
- Accurate measurement of submicrometer optical fiber diameter is essential for determining physical properties.
- Existing measurement techniques may lack the required precision for submicrometer fibers.
Purpose of the Study:
- To propose and verify a novel, high-precision method for measuring the diameter of submicrometer optical fibers.
- To leverage waveguide theory and near-field light phenomena for accurate diameter determination.
Main Methods:
- Utilizing the pitch of a standing-wave near-field light generated by counter-propagating light within the fiber.
- Employing scanning near-field optical microscopy to measure the standing-wave pitch along the fiber axis.
- Solving the optical fiber eigenvalue equation to derive the fiber diameter from the measured pitch.
Main Results:
- Demonstrated a novel diameter measurement technique for submicrometer optical fibers.
- Achieved a high-precision measurement of approximately 0.50 µm for the optical fiber diameter.
- Validated the feasibility of the proposed technique through experimental verification.
Conclusions:
- The proposed method offers a novel and accurate approach to submicrometer optical fiber diameter measurement.
- This technique is derived from waveguide theory and utilizes standing-wave near-field light.
- The experimental results confirm the potential for high-precision measurements vital for optical fiber characterization.

