Raman Gain Distribution Measurement Employing Reference Optical Fiber
スポンサーリンク
概要
- 論文の詳細を見る
- 2003-11-01
著者
-
TOGE Kunihiro
NTT Access Network Service Systems Laboratories, NTT Corporation
-
Hogari K
Ntt Corp. Tsukuba‐shi Jpn
-
Hogari Kazuo
Ntt Access Network Service Systems Laboratories
-
Toge K
Ntt Corp. Tsukuba‐shi Jpn
-
Toge Kunihiro
Ntt Access Network Service Systems Laboratories Ntt Corporation
-
Horiguchi Tsuneo
Shibaura Institute Of Technology
関連論文
- Optical Fiber Line Surveillance System for Preventive Maintenance Based on Fiber Strain and Loss Monitoring (Special Issue on Optical Fiber Cables and Related Technologies)
- Brillouin Optical-Fiber Time Domain Reflectometry (Special Issue on Optical Fiber Cables and Related Technologies)
- Design and Performance of Low-Loss Submarine Optical Fiber Cable for Long-Distance Submarine Repeaterless Transmission System Employing Remotely Pumped EDF and Distributed Raman Amplification(Optical Fiber for Communications)
- Polarization Mode Dispersion Characteristic of Optical Fiber Ribbons Inserted Tightly into Slots(Optical Fiber for Communications)
- Novel Optical Loss Design Method for WDM Systems(Optical Fiber for Communications)
- Optical Connector Technologies for Optical Access Networks
- Novel Optical Fiber Cable with Small Cable Diameter Employing Rollable 20-Fiber Ribbons
- Raman Gain Distribution Measurement Employing Reference Optical Fiber(Optical Fiber)
- Raman Gain Distribution Measurement Employing Reference Optical Fiber
- An Optical Fiber Dropping Method for Residential Premises Employing Optical Drop Wire Stranded Cable
- Design Method for Distributed Raman Amplification Systems Based on Statistical Properties in Optical Fibers(Optical Fiber for Communications)
- Novel Fiber Endface Preparation Tool for Optical Fiber Joints Employing Thermal Surface Cleaning and Thermal Endface Cutting
- Restorability of Rayleigh Backscatter Traces Measured by Coherent OTDR with Precisely Frequency-Controlled Light Source
- Non-metallic Optical Fiber Cable with High Impact Resistant Sheath