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Bibliografia

[1] Hill D.J., Nash P.J., Jackson D.A., Webb D.J., O’Neill S.F., Bennion I., Zhang L., “A fiber laser hydrophone array”, article.

[2] H. Tai, Langley Research Center, Nasa, Hampton, “Theory of Fiber Optical Bragg Grating- Revisited”.

[3] Khoman Phang, “CMOS Optical Preamplifier Design Using Graphical Circuit Analysis”.

[4] Tran Van Muoi, “Receiver Design for High-Speed Optical-Fiber Systems”, journal of lightwave technology, vol. LT-2, NO. 3, june 1984.

[5] Shawn Parker, Prasad Shastry, “ Transimpedance Amplifiers for Optoelectronic Applications”, application note.

[6] Luise M., “Le Comunicazioni Ottiche: Sistemi di trasmissione, fotorivelatori”. [7] Kaiser G., “ Optical Fiber Communication” McGraw-Hill international editions, [8] Barry J.R., Lee E. A., “Performance of Coherent Optical Receivers”, proceding

of ieee, vol 78,NO 8, august 1990.

[9] Beard P.C., Hurrell A.M:, Mills T.N., “ characterization of polymer film optical fiber hydrophone for use in the range 1 to 20 MHz: a comparison with PVDF needle and membrane hydrophones”, IEEE transaction on ultrasonic, ferroelectrics, and frequency control, vol 49, no. 7,july 2000.

[10] Weise W., Wilkens V., Koch C., “ Frequency reponse of fiber –optic multilayer hydrophones: experimental investigation and finite element simulation”, IEEE transaction on ultrasonic, ferroelectrics, and frequency control, vol 49, no. 7,july 2002.

[11] Park S.M., Toumazou C., “ Gigahertz Low Noise Transimpedance Amplifier”, international symposium on circuits and systems, june 9-12, 1997, Hong kong.

[12] Articolo a cura dell’ Infn : “il rivelatore marino Antares”, novembre 2004.

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[13] Agrawal G. P., “ Fiber-Communication systems” a wiley-interscience publication,1997.

[14] Okoshi T., Kikuchi K., “ Cloherent Optical Fiber Communication”, KTK Scientific Publishers/Tokyo1988.

[15] Archambault J.L., Grubb S.G., “ Fiber Grating in Laser and Amplifiers”, journal of lightwavw technology, vol 15, NO. 8, august 1997.

[16] Bock W.J., Eftimov T.A., “ Simultaneous Hydrostatic Pressure and Temperature Mesaurement Employing a LP01-LP11 Fiber-Optic

Polarization-Sensitive Intermodal Interferometer”, 1993,IEEE:

[17] S. Barcelos, M. N. Zervas, R. I. Laming, and D. N. Payne , “Interferometric fiber gratings characterization,” .

[18] S. Barcelos, M. N. Zervas, R. I. Laming, D. N. Payne, L. Reekie, J. A. Tucknott, R. Kashyap, P. F. Mackee, F. Sladen, and B. Wojciechowicz, “High accuracy dispersion measurements of chirped fiber gratings,” Electron. Lett., vol. 31, no. 15, pp. 1280–1282, July 1995.

[19] Kersey A.D., Davis M.A., Patrick H.J., LeBlanc M., Koo K.P., Askins C.G., Putman M.A., Frebele E.J., “Fiber Grating Sensors”, journal of lightwave technology, vol 15, NO 8, august 1997.

[20] Kuzmenko P. J., “ experimental performance of a miniature Fabry- Perot fiber optic hydrophone”, article.

[21] G. Meltz, W. W. Morey, and W. H. Glenn, “Formation of Bragg gratings in optical fibers by a transverse holographic method,” Opt. Lett., vol.14, 1989. [22] P. F. Wysocki, J. B. Judkins, R. Espindola, M.Andrejco, A. M.

Vengsarkar, and K. Walker, “Erbium-doped fiber amplifier flattened beyond 40 nm using long-period grating,” in Proc. Conf. Optic. Fiber Commun., 1997. [23] M. Douay, T. Feng, P. Bernage, P. Niay, E. Delevaque, and T. Georges, “Birefringence if optical fiber laser with intracore fiber Bragg grating,” IEEE

Photon. Technol. Lett., vol. 4,1992.

[24] G. A. Ball, G. Hull-Allen, C. Holton, and W. W. Morey, “Low noise single frequency linear fiber laser,” Electron. Lett., vol. 29, 1993.

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[25] H. M. Pask, R. J. Carman, D. C. Hanna, A. C. Tropper, C. J. Mackechnie, P. R. Barber, and J. Dawes, “Ytterbium-doped silica fiber laser: Versatile sources for the 1–1.2 _m region,” IEEE J. Select. Topics Quantum Electron., vol. 1, 1995.

[26] Kevin Hsu, Wei H. Loh, Liang Dong, and Calvin M. Miller, “Efficient and Tunable Er/Yb Fiber Grating Lasers, JOURNAL OF LIGHTWAVE TECHNOLOGY, VOL. 15, NO. 8, AUGUST 1997.

[27] G. A. Ball and W. W. Morey, “Continuously tunable single-mode erbium fiber laser,” Opt. Lett., vol. 17, Mar. 1992.

[28] L. Dong, W. H. Loh, J. E. Caplen, J. D. Minelly, K. Hsu, and L. Reekie,

“Efficient single frequency fiber lasers using novel photosensitive Er/Yb optical fiber”, Opt. Lett.,vol 22,1997.

[29] J. E. Townsend, W. L. Barnes, K. P. Jedrzejewski, and S. G. Grubb, “Yb3+ sensitised Er3+ doped silica optical fiber with ultrahigh transfer efficiency and gain,” Electron. Lett., vol. 27, 1991.

[30] “ Appunti di Optoelettronica” tratti dalle lezioni di Optoelettronica del corso di laurea di ingegneria elettronica presso l’università Tor Vergata, Roma. [31] C. Chen, J. W. Alexander, H. Hemmati, S. Monacos, T. Yan, S. Lee, J.

R. Lesh,and S. Zingales, \System Requirements for a Deep Space Optical Transceiver,"in Free-Space Laser Communication Technologies XI, G. S. Mecherle, Editor,Proceedings of the SPIE, vol. 3615, 1999.

[32] “ Appunti tratti dalle lezioni di Optoelettronica” dell’ingegnere Giuliani G., università di Pavia,2003.

[33] “ Appunti tratti dalle lezioni di Optoelettronica” dell’ingegnere Cucinotta Anna Maria, università di Parma corso di ingegneria delle telecomunicazioni, 2002.

[34] “Appunti tratti dalle lezioni di Optoelettronica” del Prof. Bagnoli P.E., università degli studi di Pisa, corso di ingegneria elettronica,2001.

[35] W.B. Carter, President AT&T Submarine Systems Inc., “Global undersea fiber optic network: trends and implications,” Plenary address at the Optical Fiber Communications Conference, San Jose (CA), Feb. 1996.

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[36] D.M. Spirit, A.D. Ellis and P.E. Barnsley, “Optical time division multiplexing: systems and networks,” IEEE Communications Magazine, vol. 32, no. 12, pp 56-62, Dec. 1994.

[37] Datasheet Texas Instrument “transimpedence amplifier series: 380”, November 2004;

[38] Datasheet Analog Device : “photoriceiver” 2003-2004. [39] Datasheet Analog Device “photodiode”.

[40] Datasheet Analog Device “ transimpedance amplifier”. [41] Datasheet OptoSci “photoreceiver”.

[42] Datasheet Motorola “ transimpedance amplifier”. [43] Datasheet Motorola “photoriceiver”.

[44] Datasheet Motorola “photodiode”. [45] Datasheet Femto “photoreceiver”.

[46] Anghinolfi F. “Analogue Circuits Techniques”, Cern 2002.

[47] J. L. Hullett and T. V. Muoi, “A feedback receive amplifier for optical transmission systems,” IEEE Trans. Commun., vol. COM-24, Oct. 1976.

[48] L. A. D. van den Broeke and A. J. Nieuwkerk, “Wide-band integrated optical receiver with improved dynamic range using a current switch at the input,” IEEE J. Solid-State Circuits, vol. 28, July 1993.

[49] C. Petri, S. Rocchi, and V. Vignoli, “High dynamic CMOS preamplifiers for QW diodes,” Electron. Lett., vol. 34, no. 9, pp. 877–878, Apr. 1998.

[50] A. J. C. Moreira, R. T. Valadas, and A. M. de Oliveira Duarte, “Optical interference produced by artificial light,” Wireless Networks, vol. 3, pp.1997. [51] S. T. Dupuie and M. Ismail, “High frequency CMOS transconductors,” in

Analogue IC design: The Current-Mode Approach, C. Toumazou, F. J.Lidgey,

and D. G. Haigh, Eds. London, U.K.: Peter Peregrinus, 1990.

[52] G.P. Agrawal, Fiber-Optic Communication Systems. Wiley Interscience: New York, 1992.

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[53] W.B. Carter, President AT&T Submarine Systems Inc., “Global undersea fiber opticnetwork: trends and implications,” Plenary address at the Optical

Fiber Communications Conference, San Jose (CA), Feb. 1996.

[54] K.C. Kao and G.A. Hockham, “Dielectric fiber surface waveguides for optical frequencies,”Proceedings of the IEE, vol. 133, pp 1151-1158, Jul. 1966. [55] S. Camatel, V. Ferrero, R. Gaudino and P. Poggiolini, "Optical

phase-locked loop for coherent detection optical receiver", IEE Electronics Letters, vol. 40 (2004).

[56] Brosson P., Ribeiro C., Ripper J. “Frequency demodulation of a semiconductor laser by FM-AM conversion in an optical fiber”.

[57] J. Smith, “Modern Communication System”, McGraw-Hill International Edition.

[58] J.C.Whitaker “Radio Frequency Trasmission System: design and operation”, Intertext Pubblication.

[59] A.N. D’Andrea “Comunicazioni elettriche” ,edizioni ETS,Pisa. [60] Kinley “Standard Radio Communications Manual”,Prentice-Hall,Inc. [61] Carlson, “Communication system”.

[62] Hyatt, Gilbert P. “Communication system”.

[63] Appunti dal corso di Mark D. Jones & Scott Mullin “FM Demodulation with Phase-Locked Loops” University of North Florida.

[64] Carr, J. J., “Secrets of RF Circuit Design”, McGraw-Hill Inc., New York, 2001.

[65] Christiansen, D. G., Electronics Engineers’ Hanbook, McGraw-Hill Inc., New York, 1989.

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[66] Couch, L. W., “Digital and Analog Communication Systems”, Macmillan Publishing Company, New York, 1993

[67] Stremler, F. G., Introduction to Communication Systems, Addison Wesley Publishing Company, Mass., 1982.

[68] Datasheet Ortel “laser DFB”.

[69] Datasheet TRIQUINT OPTOELECTRONICS “LASER DFB”. [70] Datasheet KR Electronics “filtri”.

[71] Datashet Murata “filtri”. [72] Datasheet Trilithic “filtri”.

[73] R. Blake “Electronic communication systems” Delmat Thomson Learning, 2° edizione 2002.

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