Advances in Optical Amplifiers by Paul Urquhart

By Paul Urquhart

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H. & Jeon, M. Y. (2006). The characterization of all-optical 3R regeneration based on InP-related semiconductor optical devices, IEEE J. of selected topics in Quantum Electronics, Vol. 12, No. -P. -Y. (2005). Implementation of a new ultrawide-band impulse system, IEEE Photonics Technology Letters, Vol. 17, No. K. ; Rees, P. & Hopkinson, M. (2005). Dynamics of the wetting-layer-quantum-dot interaction in GaAs self-assembled systems, IEEE Journal of Quantum Electronics, Vol. 41, No. 3, (March 2005), 344-350, ISSN 0018-9197 Mukherjee, B.

6, No. W. & Mørk, J. (2004). Saturation and Noise Properties of Quantum-Dot Optical Amplifiers. IEEE J. of Quantum Electronics, Vol. 40, No. ; Grundmann, M. & Ledentsov, N. N. (1999). Quantum Dot Heterostructures. F. (1999). The Physics of Semiconductors with applications to optoelectronic devices. C. (2005). Principles of Lasers and Optics. J. L. (2006). Slow and fast light in semiconductor quantum-well and quantum-dot devices. Journal of Lightwave Technology, Vol. 24, No. B. K. (2002). All-optical logic XOR using differential scheme and Mach-Zender interferometer.

4 (July 1989) 25-30, ISSN 8755-3996 Freude, W. & al. (2010). Linear and nonlinear semiconductor optical amplifiers. B. & Kohno, R. (2005). Ultra Wideband Signals and Systems in Communication Engineering, Wiley, ISBN-10 0-470-86571-5(H/B), Chichester, England Gehrig, E. & O. Hess, O. (2002). Mesoscopic spatiotemporal theory for quantum-dot lasers. Phys. Rev. A, Vol. 65, No. ; Guégan, M. & Pucel, B. (2002). All-Optical logic NOR Gate Using Two-Cascaded Semiconductor Optical Amplifiers. IEEE Photonics Technology Letters, Vol.

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