研究目的
To propose and demonstrate a polarization-independent wavelength-tunable first-order fiber comb filter based on a polarization-diversified loop configuration for applications in optical communication and signal processing.
研究成果
The proposed filter successfully demonstrates continuous wavelength tunability for first-order comb spectra (flat-top and narrow band) in a polarization-independent manner, with potential applications in multiwavelength lasing, switching, and signal processing. Future work could focus on miniaturization and improved stability.
研究不足
Deviations between theoretical and experimental results due to birefringence in single-mode fibers; polarization-dependent loss in detectors and PBS; temperature sensitivity requiring hermetic sealing or cooling for stability; insertion losses from components and splicing.
1:Experimental Design and Method Selection:
The filter is designed using Jones matrix formulation to derive transmittance and find WR orientation angles for phase shifts. It employs a polarization-diversified loop configuration with specific optical components.
2:Sample Selection and Data Sources:
Two equal-length high birefringence fiber segments are used, with birefringence and length specified to achieve a free spectral range of ~0.8 nm at 1550 nm.
3:8 nm at 1550 nm. List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: Includes a four-port polarization beam splitter (PBS), three half-wave retarders (HWRs), two quarter-wave retarders (QWRs), two bow-tie HBF segments (~7.12 m length), broadband light source, optical spectrum analyzer, and single-mode fibers for pigtailing.
4:12 m length), broadband light source, optical spectrum analyzer, and single-mode fibers for pigtailing. Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: Construct the filter with components, monitor transmission spectra using a broadband light source and optical spectrum analyzer, adjust WR angles to specific sets for wavelength tuning, and measure performance parameters like insertion loss and bandwidth.
5:Data Analysis Methods:
Analyze transmission spectra, calculate phase shifts, and use Poincare sphere to study SOP evolution.
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Broadband Light Source
FL7701
Fiberlabs
Provides input light for measuring transmission spectra.
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Optical Spectrum Analyzer
AQ6370C
Yokogawa
Measures and analyzes the transmission spectra of the filter.
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Polarization Controller
8169A
Agilent
Used to check polarization independence by modulating input polarization.
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Polarization Beam Splitter
OZ Optics
Splits input light into orthogonal polarizations for the polarization-diversified loop configuration.
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Half-Wave Retarder
OZ Optics
Adjusts the polarization state of light to control phase shifts and effective birefringence.
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Quarter-Wave Retarder
OZ Optics
Adjusts the polarization state of light to control phase shifts and effective birefringence.
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High Birefringence Fiber
Bow-tie type
Fibercore
Acts as birefringent elements to generate interference spectra with specific free spectral range.
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