Temperature dependence of injection-locked Fabry-Pérot laser emission in WDM-PON architectures
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[1] Cedric F. Lam,et al. Passive Optical Networks: Principles and Practice , 2011 .
[2] Z. Sipus,et al. Modulation-Averaging Reflectors for Extended-Cavity Optical Sources , 2011, Journal of Lightwave Technology.
[3] Zvonimir Sipus,et al. C and L band self-seeded WDM-PON links using injectionlocked Fabry-Pérot lasers and modulation averaging , 2014, OFC 2014.
[4] Mario Martinelli,et al. Up to 10.7-Gb/s High-PDG RSOA-Based Colorless Transmitter for WDM Networks , 2013, IEEE Photonics Technology Letters.
[5] R P Giddings,et al. Self-seeding-based 10Gb/s over 25km optical OFDM transmissions utilizing face-to-face dual-RSOAs at gain saturation. , 2014, Optics express.
[6] Sil-Gu Mun,et al. A WDM-PON with a 40 Gb/s (32 x 1.25 Gb/s) capacity based on wavelength-locked Fabry-Perot laser diodes. , 2008, Optics express.
[7] Byoung-Whi Kim,et al. WDM-PON development and deployment as a present optical access solution , 2009, 2009 Conference on Optical Fiber Communication - incudes post deadline papers.
[8] Frank Geilhardt,et al. Network operator requirements for the next generation of optical access networks , 2012, IEEE Network.
[9] Chang-Hee Lee,et al. Fiber to the Home Using a PON Infrastructure , 2006, Journal of Lightwave Technology.
[10] M. Ibsen,et al. Noise suppression of incoherent light using a gain-saturated SOA: implications for spectrum-sliced WDM systems , 2005, Journal of Lightwave Technology.
[11] J. Walkup,et al. Statistical optics , 1986, IEEE Journal of Quantum Electronics.