WDM transmission in 1.0.MU.m band over PCF using supercontinuum source
Author:
Affiliation:
1. NTT Access Network Service Systems Laboratories, NTT Corporation
2. NTT Photonics Laboratories, NTT Corporation
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
http://www.jstage.jst.go.jp/article/elex/5/11/5_11_395/_pdf
Reference11 articles.
1. Ytterbium-doped fiber amplifiers
2. Endlessly single-mode photonic crystal fiber
3. [3] K. Tajima, “Low loss PCF by reduction of hole surface imperfection, ” Proc. ECOC2007, Cannes, France, PD 2.1, 2007.
4. 40 Gbit∕s transmission over photonic crystal fibre using mid-span spectral inversion in highly nonlinear photonic crystal fibre
5. [5] K. Kurokawa, K. Tajima, J. Zhou, K. Nakajima, T. Matsui, and I. Sankawa, “Penalty-free dispersion-managed soliton transmission over 100km low loss PCF, ”Proc. OFC2005, Anaheim, USA, PD21, 2005.
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1. A single-channel 128 Tbit/s-58 km transmission in the 11 μm band with wideband GVD and slope compensation;Optics Express;2013-11-15
2. Improved flatness and tunable bandwidth of the supercontinuum generation in all-normal dispersion-flattened PCF using Littman–Metcalf optical bandpass filter;Optics & Laser Technology;2012-09
3. Absorption Change Induced by Electric Field of an InGaAsP/InAlAs/InP Asymmetric Quantum Well Structure Gown on InP Substrates;Japanese Journal of Applied Physics;2011-02-07
4. Absorption Change Induced by Electric Field of an InGaAsP/InAlAs/InP Asymmetric Quantum Well Structure Gown on InP Substrates;Japanese Journal of Applied Physics;2011-02-01
5. 1-μm- band transmission by use of a wavelength tunable quantum-dot laser over a hole-assisted fiber;SPIE Proceedings;2009-01-24
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