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Model of Ti: LiNbO3 Two-Mode-Interference Polarization-Independent Switch and Polarization Splitter
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Jiři Čtyroký,
Published/Copyright:
June 1, 1992
Published Online: 1992-06
©2011 by Walter de Gruyter GmbH & Co.
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Articles in the same Issue
- Editorial
- Design Considerations for 1.55 μm Loss Minimized 1.3 μm Zero-Dispersion Single-Mode Optical Fiber Submarine Cables
- Design and Field Test of a Fully Implemented, High Sensitivity 636 Mbit/s Polarization Diversity SF-FSK System
- Statistical Study of Extinction Ratio Degradation Caused by SRS in a HDWDM System
- Model of Ti: LiNbO3 Two-Mode-Interference Polarization-Independent Switch and Polarization Splitter
- Experimental Arrangement for Measurement of State of Polarization
- In-Situ Raman Spectroscopic Study of Hydrogen Diffusion in Fluorine-Doped Optical Fibers
- A Simple Method of Estimation of the Critical Normalized Frequency
- News
Articles in the same Issue
- Editorial
- Design Considerations for 1.55 μm Loss Minimized 1.3 μm Zero-Dispersion Single-Mode Optical Fiber Submarine Cables
- Design and Field Test of a Fully Implemented, High Sensitivity 636 Mbit/s Polarization Diversity SF-FSK System
- Statistical Study of Extinction Ratio Degradation Caused by SRS in a HDWDM System
- Model of Ti: LiNbO3 Two-Mode-Interference Polarization-Independent Switch and Polarization Splitter
- Experimental Arrangement for Measurement of State of Polarization
- In-Situ Raman Spectroscopic Study of Hydrogen Diffusion in Fluorine-Doped Optical Fibers
- A Simple Method of Estimation of the Critical Normalized Frequency
- News