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Simulation of Four-wave Mixing in Optical Fibers under Consideration of the Polarization States of the Waves
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T. Schneider,
Veröffentlicht/Copyright:
1. Juni 1998
Published Online: 1998-06
©2011 by Walter de Gruyter GmbH & Co.
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Artikel in diesem Heft
- Editorial
- Microbending Loss and Stresses Induced by both Temperature Variation and Axial Strain in Multi-coated Optical Fibers
- Fabrication of a Wedge-shaped Fiber Endface by a Self-centering Technique
- Multicasting in Optical Transport Networks
- Doubling the Number of Users in a WDM Star Network
- Effect of the Transition Region on Wavelength Sensitivity of Directional Coupler Switches
- Analyze of the Influence of System Parameters on the System Performance in Time Domain
- Simulation of Four-wave Mixing in Optical Fibers under Consideration of the Polarization States of the Waves
- News
Artikel in diesem Heft
- Editorial
- Microbending Loss and Stresses Induced by both Temperature Variation and Axial Strain in Multi-coated Optical Fibers
- Fabrication of a Wedge-shaped Fiber Endface by a Self-centering Technique
- Multicasting in Optical Transport Networks
- Doubling the Number of Users in a WDM Star Network
- Effect of the Transition Region on Wavelength Sensitivity of Directional Coupler Switches
- Analyze of the Influence of System Parameters on the System Performance in Time Domain
- Simulation of Four-wave Mixing in Optical Fibers under Consideration of the Polarization States of the Waves
- News