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[3] A. Bogoni, P. Ghelfi, M. Scaffardi, L. Potì, “All-Optical Regeneration and Demultiplexing for 160-Gb/s Transmission System Using a NOLM-Based Three Stage Scheme”, IEEE J. Quantum Electron., pp. 192-197, Vol. 10, 2004.

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R EFERENCES

[1] A. Bogoni, L. Potì “Elementi di Comunicazioni Ottiche”, Pitagora Editrice Bologna, 2003.

[2] A. Bogoni, M. Scaffardi, P. Ghelfi, L. Potì, “Nonlinear Optical Loop Mirrors:

Investigation Solution and Experimental Validation for Undesirable Counterpropagating Effects in All-Optical Signal Processing”, IEEE J. Quantum Electron., pp. 115-121, Vol. 10, 2004.

[3] A. Bogoni, P. Ghelfi, M. Scaffardi, L. Potì, “All-Optical Regeneration and Demultiplexing for 160-Gb/s Transmission System Using a NOLM-Based Three Stage Scheme”, IEEE J. Quantum Electron., pp. 192-197, Vol. 10, 2004.

[4] K. J. Blow, N. J. Doran, B. P. Nelson, “Demonstration of the Nonlinear Fiber Loop Mirror as an Ultrafast All-Optical Demultiplexer” Electronics Letters, Vol. 26, No. 14, 1990.

[5] J. Li, “Ultrasound Modulated Optical Tomography for Biomedical Applications”, Texas A&M University, August 2004.

[6] G. Meloni, A. Bogoni, L. Potì, “Real-time ps-resolution optical sampler based

on XPM-induced polarization rotation in 1-meter-long bismuth oxide fibre”, ECOC

2005, vol. 1.

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Analisi e realizzazione di un campionatore ottico quasi-asincrono basato su cross-phase modulation per segnali ultra-veloci

[7] G. Meloni, “Prescaled Synchronous All-Optical Sampler” Internal Workshop 10 on Photonic Networks and Technologies, Scuola Superiore Sant’Anna, Pisa, November 15-16, 2006.

[8] A. Bogoni, E. Lauri, G. Berrettini, M. Scaffardi, F. Fresi, P. Guelfi, J. K. Bae, S. B. Lee, L. Potì, “Asynchronous optical sampler for monitoring of 40 Gbit/s signal in C-band”, COIN 2006.

[9] E. Benkler, A. G. Steffan, H. R. Telle, “Frequency-Offset PLL for Synchronous Optical Sampling of OTDM Signals” IEEE Photonics Technology Letters, Vol. 19, No. 5, March 1, 2007.

[10] C. W. Thiel “Four-Wave Mixing and its Applications”.

[11] M. D. Pelusi, H. Liu, “Higher Order Soliton Pulse Compression in Dispersion-decreasing Optical Fibers”, IEEE J. Quantum Electron., Vol. 24 pp 184- 197, Feb. 2007.

[12] M. Connelly, “Semiconductor Optical Amplifiers and their Applications”

Dept. Electronic and Computer Engineering University of Limerick.

[13] G. Guekos, “Photonic Devices for Telecommunications”, Ed. Springer, Berlin 1999.

[14] A. Uskov, et al. “Wave Mixing in Semiconductor Laser Amplifiers Due to Carrier Heating and Spectral-Hole Burning”, IEEE J. Quantum Electron., vol. 30, pp.

1769-1781, August 1994.

[15] S. Di Pascoli “Note sui PLL” Servizio Editoriale Universitario di Pisa, March 2003.

[16] A. N. D’Andrea “Comunicazioni Elettriche” Edizioni ETS, Pisa, 2002.

[17] P. V. Mamyshev, S. V. Chernikov, and E. M. Dianov, “Generation of fundamental soliton trains for high-bit-rate optical fiber communication lines,” IEEE J.

Quantum Electron., vol. 27, no. 10, pp. 2347–2355, Oct. 1991.

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