참고문헌
- IEEE J. Quantum Electronics v.34 no.11 Key Technologies for Terabit/Second WDM Systems with High Spectral Efficiency of Over 1 bit/s/Hz Takashi Ono;Yutaka Yano
- APCC/OECC '99 v.2 The EDFA: past, present and future Mears, R.J.
- ETRI J. v.20 no.1 Design and Control of Gain-Flattened Erbium-Doped Fiber Amplifier for WDM Applications Kim, H.K.;Park, S.Y.;Lee, D.H.;Park, C.S.
- J. Lightwave Technology v.17 no.3 Alternating Cascade of Spectrally Different Erbium-Doped Fiber Amplifiers for Link-Loss-Insensitive Long-Haul WDM Transmission Nilsson, Johan;Jaskorzynska, Bozena
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IEEE Photonics Technol. Lett.
v.9
no.5
Gain-flattened Er3+-doped Fibre Amplifier for a WDM Signal in The 1.57-1.60
$\mu$ m Wavelength Region Ono, H.;Yamada, M.;Kanamori, T.;Ohishi, Y. -
J. Lightwave Technol. Lett.
v.17
no.3
1.58
$\mu$ m Band Gain-Flattened Erbium-Doped Fiber Amplifiers for WDM Transmission Systems Ono, H.;Yamada, M.;Kanamori, T.;Sudo, S.;Ohishi, Y. - Proc. ECOC’98 A Gain-Flattened Ultra Wide Band EDFA for High Capacity WDM Optical Communications Systems Sun, Y.;Suhoff, J.W.;Srivastavas, A.K.;Abramov, A.;Strasser, T.A.;Wysocki, P.F.;Pedrazzani, J.R.;Judkins, J.B.;Espindola, R.P.;Wolf, C.;Zyskind, J.L.;Vengsarkar, A.M.;Zhou, J.
- Electron. Lett. v.33 no.10 First Demonstration of 1580nm Wavelength Band WDM Transmission for Doubling Usable Bandwidth and Suppressing FWM in DSF Jinno, M.;Sakamoto, J.;Kani, J.;Aisawa, S.;Oda, K.;Fukui, M.;Ono, H.;Oguchi, K.
- Electron. Lett. v.34 no.20 Flat-Gain Operation of 1580nm-Band EDFA with Gain Variation of 0.2dB Over 1579-1592nm Sakamoto, T.;Hittori, K.;Kani, J.;Fukutoku, M.;Fukui, M.;Jinno, M.;Oguchi, K.
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Electron. Lett.
v.34
no.15
Single Output Characteristics of 1.58
$\mu$ m Band Gain Flattened Er$^{3+}$ -Doped Fibre Amplifiers for WDM Systems Ono, H.;Yamada, M.;Shimizu, M.;Ohishi, Y. -
Electron. Lett.
v.34
no.15
Comparison of Amplification Characteristics of 1.58 and 1.55
$\mu$ m Band EDFAs Ono, H.;Yamada, M.;Shimizu, M.;Ohishi, Y. -
Electron. Lett.
v.33
no.17
Low-Noise and High-Gain 1.58
$\mu$ m Band Er$^{3+}$ -Doped Fibre Amplifiers with Cascade Configurations Ono, H.;Yamada, M.;Kanamori, T.;Ohishi, Y. - APCC/OECC '99. Fifth Asia-Pacific Conference on Communications and Fourth Optoelectronics and Communications Conference v.2 Performance Improvement of Wideband EDFA by ASE Injection from C band to L band Amplifier Min, B.;Yoon, H.;Lee, W.;Kim, J.;Park, N.
- Electron. Lett. v.27 no.14 Erbium-Doped Fibre Amplifier with Constant Gain for Pump between 966 and 1004nm Percival, R.M.;Cole, S.;Cooper, D.M.;Craig-Ryan, S.P.;Ellis, A.D.;Rowe, C.J.;Stallard, W.A.
- IEEE Photonics Technol. Lett. v.4 no.1 Power Requirement for Erbium-Doped Fibre Amplifiers Pumped in the 800, 980, and 1480nm Bands Pedersen, B.;Thompson, B.A.;Zemon, S.;Miniscalco, W.J.;Wei, T.
- IEEE Photonics Technol. Lett. v.11 no.10 980-nm Pump-Band Wavelengths for Long-Wavelength-Band Erbium-Doped Fiber Amplifier Flood, F.A.;Wang, C.C.
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Electron. Lett.
v.26
no.20
High Gain, Broadband, 1.6
${\mu}m\;Er^{3+}$ -Doped Silica Fibre Amplifier Massicott, J.F.;Armitage, J.R.;Wyatt, R.;Ainslie, B.J.;Craig-ryan, S.P. -
Electron Lett.
v.28
no.20
Low Noise Operation of Er
$^{3+}$ Doped Silica Fibre Amplifier around 1.6um Massicott, J.F.;Wyatt, R.;Ainslie, B.J. - Proc. ECOC’98 Measurement of the Quantum Efficiency of Long Wavelength EDFAs with and without an Idler Signal Di Muro, R.;Jolley, N.E.;Mun, J.