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Splice Loss in Dispersion-Shifted and Dispersion-Flattened Single-Mode Fibers: A Comparison
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S. N. Sarkar,
Veröffentlicht/Copyright:
1. September 1986
Published Online: 1986-09
©2011 by Walter de Gruyter GmbH & Co.
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Artikel in diesem Heft
- Editorial
- Application of the Refracted Near-Field Technique to Multimode Planar and Channel Waveguides in Glass
- Stabilization of a Fiber-Optic Mach-Zehnder-Interferometer Used as an Intensity Modulator
- Lens Coupling of Laser Diodes to Monomode Elliptic Core Fibers
- Speckle and Modal Noise Techniques for Coupling of Light between Optical Graded Index Fibers
- Splice Loss in Dispersion-Shifted and Dispersion-Flattened Single-Mode Fibers: A Comparison
- Nonlinear System Modeling of Semiconductor Lasers Based on Volterra Series
- News
Artikel in diesem Heft
- Editorial
- Application of the Refracted Near-Field Technique to Multimode Planar and Channel Waveguides in Glass
- Stabilization of a Fiber-Optic Mach-Zehnder-Interferometer Used as an Intensity Modulator
- Lens Coupling of Laser Diodes to Monomode Elliptic Core Fibers
- Speckle and Modal Noise Techniques for Coupling of Light between Optical Graded Index Fibers
- Splice Loss in Dispersion-Shifted and Dispersion-Flattened Single-Mode Fibers: A Comparison
- Nonlinear System Modeling of Semiconductor Lasers Based on Volterra Series
- News