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1
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Semiconductor Optical Amplifier-Based All-Optical Gates for High-Speed Optical Processing, K. E. Stubkjaer, IEEE J. on Sel. Top. in Quant. Electron., 6, p.1428 (2000).
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"Semiconductor Optical Amplifier-Based All-Optical Gates for High-Speed Optical Processing", K. E. Stubkjaer, IEEE J. on Sel. Top. in Quant. Electron., 6, p.1428 (2000).
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2
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0033584904
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Non-linear optics for high-speed digital information processing, D. Cotter, R. J. Manning, K. J. Blow, A. D. Ellis, A. E. Kelly, D. Nesset, I. D. Phillips, A. J. Poustie and D. C. Rogers, Science, 286 (5444), p.1523 (1999).
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"Non-linear optics for high-speed digital information processing", D. Cotter, R. J. Manning, K. J. Blow, A. D. Ellis, A. E. Kelly, D. Nesset, I. D. Phillips, A. J. Poustie and D. C. Rogers, Science, 286 (5444), p.1523 (1999).
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39749113646
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www.ciphotonics.com
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39749085655
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www.kailight.com
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5
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39749120324
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www.alphion.com
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6
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39749117286
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The use of GaInAsP amplifiers for 40 Gbit/s signal processing, A.D.Ellis, D.M.Spirit, OSA Nonlinear Guided-Wave Phenomena, paper PD2, Cambridge (1993).
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"The use of GaInAsP amplifiers for 40 Gbit/s signal processing", A.D.Ellis, D.M.Spirit, OSA Nonlinear Guided-Wave Phenomena, paper PD2, Cambridge (1993).
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7
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0031098737
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Low noise figure (7.2dB) and high gain (29dB) semiconductor optical amplifier with a single layer AR coating , A. E. Kelly, I. F. Lealman, L. J. Rivers, S. D. Perrin and M. Silver, Electron. Lett., 33, p.536 (1997).
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"Low noise figure (7.2dB) and high gain (29dB) semiconductor optical amplifier with a single layer AR coating" , A. E. Kelly, I. F. Lealman, L. J. Rivers, S. D. Perrin and M. Silver, Electron. Lett., 33, p.536 (1997).
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8
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39749116060
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Semiconductor devices for optical processing, A. J. Poustie, paper We3.5.1, ECOC 2005, Glasgow, U.K. (2005).
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"Semiconductor devices for optical processing", A. J. Poustie, paper We3.5.1, ECOC 2005, Glasgow, U.K. (2005).
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9
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39749153310
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Ultimate performance of SOA-based interferometer as decision element on 40Gb/s all-optical regenerator, P. Guerber, B. Lavigne and O. Leclerc, paper ThGG100, OFC 2002, U.S.A. (2002).
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"Ultimate performance of SOA-based interferometer as decision element on 40Gb/s all-optical regenerator", P. Guerber, B. Lavigne and O. Leclerc, paper ThGG100, OFC 2002, U.S.A. (2002).
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10
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39749139958
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Dimensional dependence of semiconductor optical amplifier recovery speeds, R. Giller, R.J. Manning, G. Talli, R.P. Webb, M.J. Adams, paper We3.P.68, ECOC 2006, France (2006).
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"Dimensional dependence of semiconductor optical amplifier recovery speeds", R. Giller, R.J. Manning, G. Talli, R.P. Webb, M.J. Adams, paper We3.P.68, ECOC 2006, France (2006).
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11
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65249108604
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Polarization-Insensitive SOA-MZI Monolithic All-Optical Wavelength Converter for Full C-band 40Gbps-NRZ Operation, Y. Miyazaki, T. Miyahara, K. Takagi, K. Matsumoto, S. Nishikawa, T. Hatta, T. Aoyagi and Kuniaki Motoshima, paper Th3.4.2, ECOC 2006, France (2006).
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"Polarization-Insensitive SOA-MZI Monolithic All-Optical Wavelength Converter for Full C-band 40Gbps-NRZ Operation", Y. Miyazaki, T. Miyahara, K. Takagi, K. Matsumoto, S. Nishikawa, T. Hatta, T. Aoyagi and Kuniaki Motoshima, paper Th3.4.2, ECOC 2006, France (2006).
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12
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33847154244
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Reduced recovery time semiconductor optical amplifier using p-type-doped multiple quantum wells, L. Zhang, I. Kang, A. Bhardwaj, N. Sauer, S. Cabot, J. Jaques and D. T. Neilson, IEEE Phot. Technol. Lett., 18, p.2323 (2006).
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"Reduced recovery time semiconductor optical amplifier using p-type-doped multiple quantum wells", L. Zhang, I. Kang, A. Bhardwaj, N. Sauer, S. Cabot, J. Jaques and D. T. Neilson, IEEE Phot. Technol. Lett., 18, p.2323 (2006).
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http://www.ciphotonics.com/PDFs_29Aug06/SOA_NL_OEC_1550_1.pdf
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14
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0036572013
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Gain dynamics studies of a semiconductor optical amplifier, F Ginovart and J C Simon, J. Opt. A: Pure Appl. Opt., 4, p.283 (2002).
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"Gain dynamics studies of a semiconductor optical amplifier", F Ginovart and J C Simon, J. Opt. A: Pure Appl. Opt., 4, p.283 (2002).
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15
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0028516649
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Subpicosecond Gain and Index Nonlinearities in InGaAsP Diode-Lasers, K. L. Hall, G. Lenz, A. M. Darwish, and E. P. Ippen, Opt. Commun. 111, p. 589 (1994).
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"Subpicosecond Gain and Index Nonlinearities in InGaAsP Diode-Lasers", K. L. Hall, G. Lenz, A. M. Darwish, and E. P. Ippen, Opt. Commun. 111, p. 589 (1994).
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16
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0031268154
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Semiconductor laser amplifiers for ultrafast all-optical signal processing, R. J. Manning, A. D. Ellis, A. J. Poustie and K. J. Blow, J. of the Opt. Soc. of Amer. B, 14, p.3204 (1997).
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"Semiconductor laser amplifiers for ultrafast all-optical signal processing", R. J. Manning, A. D. Ellis, A. J. Poustie and K. J. Blow, J. of the Opt. Soc. of Amer. B, 14, p.3204 (1997).
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17
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0028459984
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Three-wavelength device for all-optical signal processing, R. J. Manning and D. A. O. Davies, Opt. Lett., 19, p.889 (1994).
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"Three-wavelength device for all-optical signal processing", R. J. Manning and D. A. O. Davies, Opt. Lett., 19, p.889 (1994).
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18
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85008035096
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Recovery rates in semiconductor laser amplifiers: Optical and electrical bias dependencies, R. J. Manning, D. A. O. Davies, and J. K. Lucek, Electron. Lett., 30, p.1233 (1994).
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"Recovery rates in semiconductor laser amplifiers: Optical and electrical bias dependencies", R. J. Manning, D. A. O. Davies, and J. K. Lucek, Electron. Lett., 30, p.1233 (1994).
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19
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39749152643
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The Turbo-Switch' - a novel technique to increase the high-speed response of SOAs for wavelength conversion, R.J. Manning, X. Yang, R.P. Webb, R. Giller, F.C. Garcia Gunning, A.D. Ellis, paper OWS8, OFC 2006, U.S.A. (2006).
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"The Turbo-Switch' - a novel technique to increase the high-speed response of SOAs for wavelength conversion", R.J. Manning, X. Yang, R.P. Webb, R. Giller, F.C. Garcia Gunning, A.D. Ellis, paper OWS8, OFC 2006, U.S.A. (2006).
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20
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0029388122
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SLALOM: Semiconductor laser amplifier in a loop mirror, M. Eiselt, W. Pieper and H. G. Weber, IEEE J. Lightwave Technol., 13, p.2099 (1995).
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"SLALOM: Semiconductor laser amplifier in a loop mirror", M. Eiselt, W. Pieper and H. G. Weber, IEEE J. Lightwave Technol., 13, p.2099 (1995).
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21
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0242612003
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Phase dynamics of semiconductor optical amplifiers at 10-40GHz, L. Schares, C. Schubert, C. Schmidt, H. G. Weber, L. Occhi and G. Guekos, IEEE J. Quantum. Electron., 39, p.1394 (2003).
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"Phase dynamics of semiconductor optical amplifiers at 10-40GHz", L. Schares, C. Schubert, C. Schmidt, H. G. Weber, L. Occhi and G. Guekos, IEEE J. Quantum. Electron., 39, p.1394 (2003).
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22
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Gain and phase recovery of optically excited semiconductor optical amplifiers, R. Giller, R. J. Manning and D. Cotter, IEEE Phot. Technol. Lett., 18, p.1061 (2006).
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"Gain and phase recovery of optically excited semiconductor optical amplifiers", R. Giller, R. J. Manning and D. Cotter, IEEE Phot. Technol. Lett., 18, p.1061 (2006).
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23
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0032024526
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3.8-THz wavelength conversion of picosecond pulses using a semiconductor delayed-interference signal-wavelength converter (DISC), Y. Ueno, S. Nakamura, K. Tajima, and S. Kitamura, IEEE Phot. Technol. Lett., 10, p.346 (1998).
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"3.8-THz wavelength conversion of picosecond pulses using a semiconductor delayed-interference signal-wavelength converter (DISC)", Y. Ueno, S. Nakamura, K. Tajima, and S. Kitamura, IEEE Phot. Technol. Lett., 10, p.346 (1998).
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24
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Bandwidth enhancement of SOA-based switches using optical filtering: theory and experiment, M.L. Nielsen and J. Mork, paper Tu3.5.7, ECOC 2005, Glasgow (2005).
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"Bandwidth enhancement of SOA-based switches using optical filtering: theory and experiment", M.L. Nielsen and J. Mork, paper Tu3.5.7, ECOC 2005, Glasgow (2005).
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25
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29144473298
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All-optical logic gates using semiconductor optical amplifier assisted by optical filter, Z. Li, Y. Liu, S. Zhang, H. Ju, H. de Waardt, G.D. Khoe, H.J.S. Dorren and D. Lenstra, Electron. Lett., 41, p.1397 (2005).
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"All-optical logic gates using semiconductor optical amplifier assisted by optical filter", Z. Li, Y. Liu, S. Zhang, H. Ju, H. de Waardt, G.D. Khoe, H.J.S. Dorren and D. Lenstra, Electron. Lett., 41, p.1397 (2005).
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26
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Demultiplexing 160/320 Gb/s to 40 Gb/s using a single SOA assisted by an optical filter, E. Tangdiongga, Y. Liu, H. de Waardt, G. D. Khoe and H. J. S. Dorren, paper OTuB5, OFC 2006, U.S.A. (2006).
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"Demultiplexing 160/320 Gb/s to 40 Gb/s using a single SOA assisted by an optical filter", E. Tangdiongga, Y. Liu, H. de Waardt, G. D. Khoe and H. J. S. Dorren, paper OTuB5, OFC 2006, U.S.A. (2006).
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27
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0032181603
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Error free 100 Gbit/s wavelength conversion using grating assisted cross-gain modulation in 2mm long semiconductor amplifier, A. D. Ellis, A. E. Kelly, D. Nesset, D. Pitcher, D. G. Moodie, R. Kashyap, Electron. Lett., 34, p.1958 (1998).
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"Error free 100 Gbit/s wavelength conversion using grating assisted cross-gain modulation in 2mm long semiconductor amplifier", A. D. Ellis, A. E. Kelly, D. Nesset, D. Pitcher, D. G. Moodie, R. Kashyap, Electron. Lett., 34, p.1958 (1998).
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28
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0032179107
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100 Gbit/s wavelength conversion using FWM in an MQW semiconductor optical amplifier, A.E. Kelly, A.D. Ellis, D. Nesset, R. Kashyap and D.G. Moodie, Electron. Lett., 34, p.1955 (1998).
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"100 Gbit/s wavelength conversion using FWM in an MQW semiconductor optical amplifier", A.E. Kelly, A.D. Ellis, D. Nesset, R. Kashyap and D.G. Moodie, Electron. Lett., 34, p.1955 (1998).
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29
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0032495366
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40Gbit/s transmission over 103km of NDSF using polarisation independent mid-span spectral inversion by four-wave mixing in a semiconductor optical amplifier, D. D. Marcenac, D. Nesset, A. E. Kelly and D. Gavrilovic, Electron. Lett., 34, p.100 (1998).
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"40Gbit/s transmission over 103km of NDSF using polarisation independent mid-span spectral inversion by four-wave mixing in a semiconductor optical amplifier", D. D. Marcenac, D. Nesset, A. E. Kelly and D. Gavrilovic, Electron. Lett., 34, p.100 (1998).
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30
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0030270865
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Influence of gain saturation, gain asymmetry, and pump/probe depletion on wavelength conversion efficiency of FWM in semiconductor optical amplifiers, N. C. Kothari, and D. J. Blumenthal, IEEE J. Quantum Electron. 32, p.1810 (1996).
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"Influence of gain saturation, gain asymmetry, and pump/probe depletion on wavelength conversion efficiency of FWM in semiconductor optical amplifiers", N. C. Kothari, and D. J. Blumenthal, IEEE J. Quantum Electron. 32, p.1810 (1996).
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31
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Cross-polarization modulation in semiconductor optical amplifiers, H. Soto, D. Erasme, and G. Guekos, IEEE Phot. Technol. Lett., 11, p.970 (1999).
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"Cross-polarization modulation in semiconductor optical amplifiers", H. Soto, D. Erasme, and G. Guekos, IEEE Phot. Technol. Lett., 11, p.970 (1999).
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32
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Experimental measurement of nonlinear polarization rotation in semiconductor optical amplifiers, R. J. Manning, A. Antonopoulos, R. Le Roux, and A. E. Kelly, Electron. Lett., 37, p.229 (2001).
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"Experimental measurement of nonlinear polarization rotation in semiconductor optical amplifiers", R. J. Manning, A. Antonopoulos, R. Le Roux, and A. E. Kelly, Electron. Lett., 37, p.229 (2001).
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33
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Demonstration of ultrafast all-optical wavelength conversion utilizing birefringence in semiconductor optical amplifiers, M. F. C. Stephens, M. Asghari, R.V. Penty, and I. H. White, IEEE Phot. Technol. Lett., 9, p.449 (1997).
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"Demonstration of ultrafast all-optical wavelength conversion utilizing birefringence in semiconductor optical amplifiers", M. F. C. Stephens, M. Asghari, R.V. Penty, and I. H. White, IEEE Phot. Technol. Lett., 9, p.449 (1997).
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34
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All-optical switch with switch-off time unrestricted by carrier lifetime, K. Tajima, Jpn. J. Appl. Phys., 32, L1746 (1993).
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"All-optical switch with switch-off time unrestricted by carrier lifetime", K. Tajima, Jpn. J. Appl. Phys., 32, L1746 (1993).
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35
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Reduction of nonlinear patterning effects in SOA-based all-optical switches using optical filtering, M. L. Nielsen, J. Mørk, J. Skaguchi, R. Suzuki, and Y. Ueno, paper OThE7, OFC 2005, U.S.A. (2005).
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"Reduction of nonlinear patterning effects in SOA-based all-optical switches using optical filtering", M. L. Nielsen, J. Mørk, J. Skaguchi, R. Suzuki, and Y. Ueno, paper OThE7, OFC 2005, U.S.A. (2005).
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Theoretically predicted nonlinear phase imbalance for delayed-interference signal-wavelength converters (DISC), Y. Ueno, Jpn. J. Appl. Phys., 43, p.L665 (2004).
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"Theoretically predicted nonlinear phase imbalance for delayed-interference signal-wavelength converters (DISC)", Y. Ueno, Jpn. J. Appl. Phys., 43, p.L665 (2004).
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37
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100Gbit/s all-optical wavelength conversion with integrated SOA delayed-interference configuration, J. Leuthold, C.H. Joyner, B. Mikkelsen, G. Raybon, J.L. Pleumeekers, B.I. Miller, K. Dreyerand CA. Burrus, Electron. Lett., 36, p.1129 (2000).
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"100Gbit/s all-optical wavelength conversion with integrated SOA delayed-interference configuration", J. Leuthold, C.H. Joyner, B. Mikkelsen, G. Raybon, J.L. Pleumeekers, B.I. Miller, K. Dreyerand CA. Burrus, Electron. Lett., 36, p.1129 (2000).
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A Terahertz Optical Asymmetric Demultiplexer (TOAD), J. P. Sokoloff, P. R. Prucnal, I. Glesk, and M. Kane, IEEE Phot. Technol. Lett., 5, p.787 (1993).
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"A Terahertz Optical Asymmetric Demultiplexer (TOAD)", J. P. Sokoloff, P. R. Prucnal, I. Glesk, and M. Kane, IEEE Phot. Technol. Lett., 5, p.787 (1993).
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39
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40 Gbit/s Cascadable All-Optical Logic with an Ultrafast Nonlinear Interferometer, N. S. Patel, K. L. Hall and K. A. Rauschenbach, Opt. Lett., 21, p.1466 (1996).
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"40 Gbit/s Cascadable All-Optical Logic with an Ultrafast Nonlinear Interferometer", N. S. Patel, K. L. Hall and K. A. Rauschenbach, Opt. Lett., 21, p.1466 (1996).
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40
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Cancellation of non-linear patterning in semiconductor amplifier based switches, R. J. Manning, X. Yang, R. P. Webb, R. Giller and D. Cotter, paper OTuC1, OSA Optical Amplifiers and their Applications, Canada (2006).
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"Cancellation of non-linear patterning in semiconductor amplifier based switches", R. J. Manning, X. Yang, R. P. Webb, R. Giller and D. Cotter, paper OTuC1, OSA Optical Amplifiers and their Applications, Canada (2006).
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41
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Demonstration of all-optical Mach-Zehnder demultiplexer, K. I. Kang, I. Glesk, T. G. Chang, P. R. Prucnal and R. K. Boncek, Electron. Lett., 31, p.749 (1995).
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40 Gbit/s all-optical demultiplexing using a monolithically integrated Mach-Zehnder interferometer with semiconductor laser amplifiers, E. Jahn, N. Agrawal, M. Arbert, H. J. Ehrke, D. Franke, R. Ludwig, W. Peiper, H. G. Weberand C. M. Weinert, Electron. Lett., 31, p.1857 (1995).
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"40 Gbit/s all-optical demultiplexing using a monolithically integrated Mach-Zehnder interferometer with semiconductor laser amplifiers", E. Jahn, N. Agrawal, M. Arbert, H. J. Ehrke, D. Franke, R. Ludwig, W. Peiper, H. G. Weberand C. M. Weinert, Electron. Lett., 31, p.1857 (1995).
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Design optimization of all-active Mach-Zehnder wavelength converters, B. Dagens, C. Janz, D. Leclerc, V. Verdrager, F. Poingt, I. Guillemot, F. Gaborit and D. Ottenwalder, IEEE Phot. Technol. Lett., 11, p.424 (1999).
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"Design optimization of all-active Mach-Zehnder wavelength converters", B. Dagens, C. Janz, D. Leclerc, V. Verdrager, F. Poingt, I. Guillemot, F. Gaborit and D. Ottenwalder, IEEE Phot. Technol. Lett., 11, p.424 (1999).
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All-optical Mach-Zehnder interferometer wavelength converters and switches with integrated data and control signal separation, J. Leuthold, P.A. Besse, E. Gamper, M. Dulk, S. Fischer, G. Guekos and H. Melchior, IEEE J. Lightwave Technol., 17, p.1056 (1999).
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"All-optical Mach-Zehnder interferometer wavelength converters and switches with integrated data and control signal separation", J. Leuthold, P.A. Besse, E. Gamper, M. Dulk, S. Fischer, G. Guekos and H. Melchior, IEEE J. Lightwave Technol., 17, p.1056 (1999).
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45
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0041522818
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Monolithically Integrated Mach-Zehnder Interferometer Wavelength Converter and Widely Tunable Laser in InP, M. L. Masanovic, V. LaI, J. S. Barton, E. J. Skogen, L. A. Coldren and D. J. Blumenthal, IEEE Phot. Technol. Lett., 15, p.1117 (2003).
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"Monolithically Integrated Mach-Zehnder Interferometer Wavelength Converter and Widely Tunable Laser in InP", M. L. Masanovic, V. LaI, J. S. Barton, E. J. Skogen, L. A. Coldren and D. J. Blumenthal, IEEE Phot. Technol. Lett., 15, p.1117 (2003).
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46
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All-Optical Mach-Zehnder Wavelength Converter with Monolithically Integrated DFB Probe Source, L. H. Spiekman, U. Koren, M. D. Chien, B. I. Miller, J. M. Wiesenfeld, J.S.Perino, IEEE Phot. Technol. Lett., 9, p.1349 (1997).
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"All-Optical Mach-Zehnder Wavelength Converter with Monolithically Integrated DFB Probe Source", L. H. Spiekman, U. Koren, M. D. Chien, B. I. Miller, J. M. Wiesenfeld, J.S.Perino, IEEE Phot. Technol. Lett., 9, p.1349 (1997).
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47
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39749111092
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Monolithically integrated SOA-MZI wavelength converter with assist DFB-LD, T. Miyahara, A. Sugitatsu, T. Hatta, K. Takagi, K. Matsumoto, T. Aoyagi, S. Nishikawa, T. Nishimura and K. Motoshima, paper TuS4, OFC 2004, U.S.A. (2004).
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"Monolithically integrated SOA-MZI wavelength converter with assist DFB-LD", T. Miyahara, A. Sugitatsu, T. Hatta, K. Takagi, K. Matsumoto, T. Aoyagi, S. Nishikawa, T. Nishimura and K. Motoshima, paper TuS4, OFC 2004, U.S.A. (2004).
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48
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0034195938
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Ultrafast hybrid-integrated symmetric Mach-Zehnder all-optical switch and its 168 Gbps error-free demultiplexing operation, K. Tajima, S. Nakamura, Y. Ueno, J. Sasaki, T. Sugimoto, T. Kato, T. Shimoda, H. Hatakeyama, T. Tamanuki, and T. Sasaki, IEICE Trans. Electron., E83-C, p. 959 (2000).
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"Ultrafast hybrid-integrated symmetric Mach-Zehnder all-optical switch and its 168 Gbps error-free demultiplexing operation", K. Tajima, S. Nakamura, Y. Ueno, J. Sasaki, T. Sugimoto, T. Kato, T. Shimoda, H. Hatakeyama, T. Tamanuki, and T. Sasaki, IEICE Trans. Electron., E83-C, p. 959 (2000).
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49
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Very low coupling loss, hybrid-integrated all-optical regenerator with passive assembly, G. Maxwell, R. Manning, M. Nield, M. Harlow, C. Ford, M. Clements, S. Lucas, P. Townley, R. McDougall, S. Oliver, R. Cecil, L. Johnston, A. Poustie, R. Webb, I. Lealman, L. Rivers, J. King, S. Perrin, R. Moore, I. Reid, D. Scrase, paper PD3.5, ECOC 2002, Copenhagen (2002).
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"Very low coupling loss, hybrid-integrated all-optical regenerator with passive assembly", G. Maxwell, R. Manning, M. Nield, M. Harlow, C. Ford, M. Clements, S. Lucas, P. Townley, R. McDougall, S. Oliver, R. Cecil, L. Johnston, A. Poustie, R. Webb, I. Lealman, L. Rivers, J. King, S. Perrin, R. Moore, I. Reid, D. Scrase, paper PD3.5, ECOC 2002, Copenhagen (2002).
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50
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Hybrid integration of monolithic semiconductor optical amplifier arrays using passive assembly, G. Maxwell, A. Poustie, C Ford, M. Harlow, P. Townley, M. Nield, I. Lealman, S. Oliver, L. Rivers, R. Waller, 55th Electronics and Technology Conference (ECTC), p.1349, U.S.A. (2005).
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