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件数:821件
[1998]
461.[] 320 Gbit/s TDM transmission over 120 km using 400 fs pulse train.[Electron. Lett.,34,(1998),1004-1005]NAKAZAWA Masataka
462.[] Ultrafast nonlinear optical loop mirror for demultiplexing 640 Gbit/s TDM signals.[Electron. Lett.,34,(1998),1013-1014]NAKAZAWA Masataka
463.[] TDM single channel 640 Gbit/s transmission experiment over 60 km using 400 fs pulse train and walk-off free, dispersion flattened nonlinear optical loop mirror.[Electron. Lett.,34,(1998),907-908]NAKAZAWA Masataka
464.[] Long-phase error-free fiber Bragg gratings.[IEEE, Photon. Tech. Lett.,10,(1998),687-689]NAKAZAWA Masataka
465.[] Efficient optical pulse compression with optical gain via four-wave mixing.[IEICE of Japan,J81-C-I,(1998),148-157]NAKAZAWA Masataka
466.[] Intracavity dispersion effects of a regeneratively and harmonically FM mode-locked erbium-doped fiber laser.[IEICE Trans. Electron.,E81-C,(1998),189-194]NAKAZAWA Masataka
467.[] Forced phase modulation and self phase modulation effects in dispersion-tuned mode-locked fiber lasers.[IEICE Trans. Electron.,E81-C,(1998),195-200]NAKAZAWA Masataka
468.[] 40Gbit/s single channel optical soliton transmission over 70000 km using in-line synchronous modulation and optical filtering.[Electron. Lett.,34,(1998),98-99]NAKAZAWA Masataka
469.[] Wavelength tunable 1.0 ps pulse generation in 1.530-1.555 μm region from PLL, regeneratively modelocked fibre laser.[Electron. Lett.,34,(1998),1753-1754]NAKAZAWA Masataka
470.[] Second-and third-order dispersion compensation of picosecond pulses achieved by combining two nonlinearly chirped fibre Bragg gratings.[Electron. Lett.,34,(1998),2422-2423]NAKAZAWA Masataka
471.[] 40 Gbit/s soliton transmission field experiment over 1360 km using in-line soliton control.[Electron. Lett.,34,(1998),2143-2144]NAKAZAWA Masataka
472.[] Single channel 40 Gbit/s soliton transmission field experiment over 1000 km in Tokyo metropolitan optical loop network using dispersion compensation.[Electron. Lett.,34,(1998),2154-2155]NAKAZAWA Masataka
473.[] Timing jitter of solitons compressed in dispersion-decreasing fibers.[Opt. Lett.,23,(1998),1360-1362]NAKAZAWA Masataka
474.[] Fabrication of non-linearly chirped fiber gratings for higher-order dispersion compensation.[Opt. Commun.,154,(1998),5-8]NAKAZAWA Masataka
[1997]
475.[] Advantages of dispersion-allocated soliton transmission and its application to conventional 1.3 μm single-mode fiber(招待講演).[International Symposium NOLTA'98,(1997),M3F-]H. Kubota and M. Nakazawa
476.[] Superb characteristics of Dispersion-allocated soliton transmission in TDM and WDM systems(招待講演).[International Soliton symposium on optical soliton,(1997),197-224]M. Nakazawa, H. Kubota, K. Suzuki, E. Yamada, and A. Sahara
477.[] Optical soliton and nonlinear transmission systems(招待講演).[OECC'97(OptoElectronics and Communication Conference'97),(1997),PA3-1]M. Nakazawa
478.[] 160 Gbit/s WDM(20 Gbit/sx8 channels)soliton transmission over 10,000 km using in-line synchronous modulation and optical filtering.[OA&A'97, Victoria, Canada,(1997),PDP-10]M. Nakazawa, K. Suzuki, H. Kubota, A. Sahara, and E. Yamada
479.[] Low Threshold, 115 GHz continuous wave modulational instability erbium-doped fiber laser.[OECC'97(OptoElectronics and Communication Conference'97),(1997),PDP2-1]E. Yoshida and M. Nakazawa
480.[] Dispersion-allocated soliton technology and the stretched-pulse mode-locked fiber laser(招待講演).[OFC'97(Conference on Optical Fiber Communication),(1997)]M. Nakazawa
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