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1
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0024126836
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Instabilities for all-optical switching in two-mode nonlinear waveguides
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B. Daino, S. Trillo, S. Wabnitz, and G.I. Stegeman, “Instabilities for all-optical switching in two-mode nonlinear waveguides,” Proc. Soc. Photo-Opt. Eng., vol. 836, pp. 254–264, 1988.
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Proc. Soc. Photo-Opt. Eng.
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Daino, B.1
Trillo, S.2
Wabnitz, S.3
Stegeman, G.I.4
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2
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84942391963
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Application of polarization instability to optical switching
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Helsinki, Finland, Sept.
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S. Wabnitz, “Application of polarization instability to optical switching,” in Dig. ECOC′87, Helsinki, Finland, Sept. 1987, vol. II. pp. 47–50.
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Dig. ECOC′87
, vol.II
, pp. 47-50
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Wabnitz, S.1
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3
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0022580750
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New all-optical devices based on third-order nonlinearity in birefringent fibers
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B. Daino, G. Gregori, and S. Wabnitz, “New all-optical devices based on third-order nonlinearity in birefringent fibers,” Opt. Lett., vol. 11, pp. 42–44, 1986.
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Opt. Lett.
, vol.11
, pp. 42-44
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Daino, B.1
Gregori, G.2
Wabnitz, S.3
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4
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Nonlinear polarization evolution and instability in a twisted birefringent fiber
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F. Matera and S. Wabnitz, “Nonlinear polarization evolution and instability in a twisted birefringent fiber,” Opt. Lett., vol. 11, pp. 467469, 1986.
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Opt. Lett.
, vol.11
, pp. 467-469
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Matera, F.1
Wabnitz, S.2
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The nonlinear coherent coupler
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S.M. Jensen, “The nonlinear coherent coupler,” IEEE J. Quantum Electron., vol. QE-18, pp. 1580–1584, 1982.
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IEEE J. Quantum Electron.
, vol.18 QE
, pp. 1580-1584
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Jensen, S.M.1
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Optical transistors and bistable devices utilizing nonlinear transmission of light in systems with unidirectional coupled waves
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A.A. Maier, “Self-switching of light in a directional coupler,” Sov. J. Quantum Electron., vol, 14, pp. 101-104, 1984; A.A. Maier, “Switching of radiation in tunnel-coupled optical waveguides by weak radiation frequency,” Sov. J. Quantum Electron., vol. 16, pp. 892-897, 1986.
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A.A. Maier, “Optical transistors and bistable devices utilizing nonlinear transmission of light in systems with unidirectional coupled waves,” Sov. J. Quantum Electron., vol. 12, pp. 1490-1492, 1982; A.A. Maier, “Self-switching of light in a directional coupler,” Sov. J. Quantum Electron., vol, 14, pp. 101-104, 1984; A.A. Maier, “Switching of radiation in tunnel-coupled optical waveguides by weak radiation frequency,” Sov. J. Quantum Electron., vol. 16, pp. 892–897, 1986.
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, vol.12
, pp. 1490-1492
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Maier, A.A.1
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7
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0037555925
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Stability analysis of nonlinear coherent coupling
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B. Daino, G. Gregori, and S. Wabnitz, “Stability analysis of nonlinear coherent coupling,” J. Appl. Phys., vol. 58. pp. 4512–4514, 1985.
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J. Appl. Phys.
, vol.58
, pp. 4512-4514
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Daino, B.1
Gregori, G.2
Wabnitz, S.3
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8
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36549094433
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Nonlinear nonreciprocity in a coherent mismatched directional coupler
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S. Trillo and S. Wabnitz, “Nonlinear nonreciprocity in a coherent mismatched directional coupler,” Appl. Phys. Lett., vol. 49, pp. 752754, 1986.
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Appl. Phys. Lett.
, vol.49
, pp. 752-754
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Trillo, S.1
Wabnitz, S.2
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9
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Nonlinear Propagation and Self-Switching of Ultrashort Optical Pulses in Fiber Nonlinear Directional Couplers: The Normal Dispersion Regime STEFANO TRILLO, STEFAN WABNITZ, and GEORGE I. STEGEMAN, member, ieee Abstract-We investigate the propagation of short optical pulses in a nonlinear directional coupler operating in the normal dispersion regime. We consider the specific example of a birefringent periodically rocked fiber filter where coupling occurs between the two orthogonally polarized modes that are aligned with the birefringence axes of the fiber. In the simulations, a bell-shaped input pulse is injected into one polarization mode: we calculate, for different input peak powers, the energy present in the same mode at the output of a coupler, which is one or two coupling lengths long. The nonlinear temporal broadening, due to the combined effect of group velocity dispersion and self-phase modulation, sets a fundamental lower limit to the time width of the input pulses. When using pulses shorter than this critical value, the power-dependent energy switching characteristics of a one coupling-length-long device get substantially spoiled. We discuss effects related to the finite spectral bandwidth of the fiber filter. Numerical simulations are compared to recent experimental results on the self-switching of picosecond pulses in the visible (615 nm) with a birefringent rocking fiber. S. Trillo and S. Wabnitz are with the Fondazione Ugo Bordoni, Viale Europa 190, 00144 Rome, Italy. G.I. Stegeman is with the Optical Sciences Center, University of Arizona, Tucson, AZ 85721.
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S. Wabnitz, E.M. Wright, C.T. Seaton, and G.I. Stegeman, “Instabilities and all-optical phase controlled switching in a nonlinear directional coupler,” Appl. Phys. Lett., vol. 49, pp. 838–840, 1986. Nonlinear Propagation and Self-Switching of Ultrashort Optical Pulses in Fiber Nonlinear Directional Couplers: The Normal Dispersion Regime STEFANO TRILLO, STEFAN WABNITZ, and GEORGE I. STEGEMAN, member, ieee Abstract-We investigate the propagation of short optical pulses in a nonlinear directional coupler operating in the normal dispersion regime. We consider the specific example of a birefringent periodically rocked fiber filter where coupling occurs between the two orthogonally polarized modes that are aligned with the birefringence axes of the fiber. In the simulations, a bell-shaped input pulse is injected into one polarization mode: we calculate, for different input peak powers, the energy present in the same mode at the output of a coupler, which is one or two coupling lengths long. The nonlinear temporal broadening, due to the combined effect of group velocity dispersion and self-phase modulation, sets a fundamental lower limit to the time width of the input pulses. When using pulses shorter than this critical value, the power-dependent energy switching characteristics of a one coupling-length-long device get substantially spoiled. We discuss effects related to the finite spectral bandwidth of the fiber filter. Numerical simulations are compared to recent experimental results on the self-switching of picosecond pulses in the visible (615 nm) with a birefringent rocking fiber. S. Trillo and S. Wabnitz are with the Fondazione Ugo Bordoni, Viale Europa 190, 00144 Rome, Italy. G.I. Stegeman is with the Optical Sciences Center, University of Arizona, Tucson, AZ 85721.
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Appl. Phys. Lett.
, vol.49
, pp. 838-840
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Wabnitz, S.1
Wright, E.M.2
Seaton, C.T.3
Stegeman, G.I.4
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10
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84975645652
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All-optical switching and intensity discrimination by polarization instability in periodically twisted fiber filters
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A. Mecozzi, S. Trillo, S. Wabnitz, and B. Daino, “All-optical switching and intensity discrimination by polarization instability in periodically twisted fiber filters,” Opt. Lett., vol. 12, pp. 275–277, 1987.
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Opt. Lett.
, vol.12
, pp. 275-277
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Mecozzi, A.1
Trillo, S.2
Wabnitz, S.3
Daino, B.4
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11
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Nonlinear coupling of waveguide modes
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Y. Silberberg and G.I. Stegeman, “Nonlinear coupling of waveguide modes,” Appl. Phys. Lett., vol. 50, pp. 801–803, 1987.
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Appl. Phys. Lett.
, vol.50
, pp. 801-803
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Silberberg, Y.1
Stegeman, G.I.2
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12
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Nonlinear codirectional guided wave mode conversion in grating structures
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S. Trillo, S. Wabnitz, and G.I. Stegeman, “Nonlinear codirectional guided wave mode conversion in grating structures,” J. Lightwave Technol., vol. 6, p. 971, 1988.
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J. Lightwave Technol.
, vol.6
, pp. 971
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Trillo, S.1
Wabnitz, S.2
Stegeman, G.I.3
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13
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84975607739
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Electronic nonlinear optical susceptibilities of silicate glasses
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S.R. Friberg and P.W. Smith, “Nonlinear optical glasses for ultrafast optical switches,” IEEE J. Quantum Electron., vol. QE-23, pp. 2089-2094, 1987; D.W. Hall, N.F. Borrelli, W.H. Dumbaugh, M.A. Newhouse, and D.L. Weidman, “Measurements of high X3 glasses,” in Dig. CLEO Meet., Anaheim, CA, 1988 (Opt. Soc. Amer., Washington, DC, 1988), paper PD27, pp. 519-520.
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I. Tomazeau, J. Etchepare, G. Grillon, and A. Mingus, “Electronic nonlinear optical susceptibilities of silicate glasses,” Opt. Lett., vol. 10, pp. 223-225, 1985; S.R. Friberg and P.W. Smith, “Nonlinear optical glasses for ultrafast optical switches,” IEEE J. Quantum Electron., vol. QE-23, pp. 2089-2094, 1987; D.W. Hall, N.F. Borrelli, W.H. Dumbaugh, M.A. Newhouse, and D.L. Weidman, “Measurements of high X3 glasses,” in Dig. CLEO Meet., Anaheim, CA, 1988 (Opt. Soc. Amer., Washington, DC, 1988), paper PD27, pp. 519–520.
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Opt. Lett.
, vol.10
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Tomazeau, I.1
Etchepare, J.2
Grillon, G.3
Mingus, A.4
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Nonlinear propagation in GaAs/GaAlAs multiple quantum well waveguides
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P.R. Berger, Y. Chen, P. Bhattacharya, J. Pamulapati, and G.C. Vezzoli, “Demonstration of all-optical modulation in a vertical guided-wave nonlinear coupler,” Appl. Phys. Lett., vol. 52, pp. 1125-1127, 1988.
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P. Li Kam Wa, J.E. Sitch, N.J. Mason, J.S. Roberts, and P.N. Robson, “Nonlinear propagation in GaAs/GaAlAs multiple quantum well waveguides,” Electron. Lett., vol. 21, pp. 26-27, 1985; P.R. Berger, Y. Chen, P. Bhattacharya, J. Pamulapati, and G.C. Vezzoli, “Demonstration of all-optical modulation in a vertical guided-wave nonlinear coupler,” Appl. Phys. Lett., vol. 52, pp. 1125–1 127, 1988.
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Sitch, J.E.2
Mason, N.J.3
Roberts, J.S.4
Robson, P.N.5
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M. Cada, R.C. Gauthier, B.E. Paton, and J. Chrostowski, “Nonlinear guided waves coupled nonlinearly in a planar GaAs/GaAlAs multiple quantum well structure,” Appl. Phys. Lett., vol. 49, pp. 755757, 1986.
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Cada, M.1
Gauthier, R.C.2
Paton, B.E.3
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Power-dependent switching in a coherent nonlinear directional coupler in the presence of saturation
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E. Caglioti, S. Trillo, S. Wabnitz, B. Daino, and G.I. Stegeman, “Power-dependent switching in a coherent nonlinear directional coupler in the presence of saturation,” Appl. Phvs. Lett., vol. 51, pp. 293–295, 1987.
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Appl. Phvs. Lett.
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, pp. 293-295
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Caglioti, E.1
Trillo, S.2
Wabnitz, S.3
Daino, B.4
Stegeman, G.I.5
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0023411531
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Parameter tradeoffs in nonlinear directional couplers: Two level saturable media
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G.I. Stegeman, E. Caglioti, S. Trillo, and S. Wabnitz, “Parameter tradeoffs in nonlinear directional couplers: Two level saturable media,” Opt. Commun., vol. 63, pp. 281–284, 1987.
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Opt. Commun.
, vol.63
, pp. 281-284
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Stegeman, G.I.1
Caglioti, E.2
Trillo, S.3
Wabnitz, S.4
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Limitations to all-optical switching using nonlinear couplers in the presence of linear and nonlinear absorption and saturation
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E. Caglioti, S. Trillo, S. Wabnitz, and G.I. Stegeman, “Limitations to all-optical switching using nonlinear couplers in the presence of linear and nonlinear absorption and saturation,” J. Opt. Soc. Amer. B, vol. 5, pp. 472–482, 1988.
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, vol.5
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Caglioti, E.1
Trillo, S.2
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Stegeman, G.I.4
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36849105726
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Optical Kerr effect in glass waveguide
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J.M. Dziedzic, R.H. Stolen, and A. Ashkin, “Optical Kerr effect in long fibers,” Appl. Opt., vol. 20, pp. 1403-1406, 1981; R.H. Stolen, J. Botineau, and A. Ashkin, “Intensity discrimination of optical pulses with birefringent fibers,” Opt. Lett., vol. 7, pp. 512-514, 1982; B. Nikolaus, D. Grishkowsky, and A.C. Balant, “Optical pulse reshaping based on the nonlinear birefringence of optical fibers,” Opt. Lett., vol. 8, pp. 189-191, 1983; K. Kitayama, Y. Kimura, and S. Seikai, “Optical sampling using an all-fiber optical Kerr shutter,” Appl. Phys. Lett., vol. 46, pp. 623-625, 1985; K. Kitayama, Y. Kimura, and S. Seikai, “Fiber optic logic gate,” Appl. Phys. Lett., vol. 46, pp. 317319, 1985; B. Crosignani, S. Piazzolla, P. Spano, and P. Di Porto, “Direct measurement of the nonlinear phase shift in a birefringent fiber,” Opt. Lett., vol. 10, pp. 89-91, 1985; N.J. Halas, D. Krokel, and D. Grishkowsky, “Ultrafast light-controlled optical fiber modulator,” Appl. Phys. Lett., vol. 50, pp. 886-888, 1987; T. Morioka, M. Saruwatari, and A. Takada, “Ultrafast optical multi/demultiplexer utilizing optical Kerr effect in polarization maintaining singlemode fibers,” Electron. Lett., vol. 23, pp. 453-454, 1987.
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R.H. Stolen and A. Ashkin, “Optical Kerr effect in glass waveguide,” Appl. Phys. Lett., vol. 22, pp. 294-296, 1973; J.M. Dziedzic, R.H. Stolen, and A. Ashkin, “Optical Kerr effect in long fibers,” Appl. Opt., vol. 20, pp. 1403-1406, 1981; R.H. Stolen, J. Botineau, and A. Ashkin, “Intensity discrimination of optical pulses with birefringent fibers,” Opt. Lett., vol. 7, pp. 512-514, 1982; B. Nikolaus, D. Grishkowsky, and A.C. Balant, “Optical pulse reshaping based on the nonlinear birefringence of optical fibers,” Opt. Lett., vol. 8, pp. 189-191, 1983; K. Kitayama, Y. Kimura, and S. Seikai, “Optical sampling using an all-fiber optical Kerr shutter,” Appl. Phys. Lett., vol. 46, pp. 623-625, 1985; K. Kitayama, Y. Kimura, and S. Seikai, “Fiber optic logic gate,” Appl. Phys. Lett., vol. 46, pp. 317319, 1985; B. Crosignani, S. Piazzolla, P. Spano, and P. Di Porto, “Direct measurement of the nonlinear phase shift in a birefringent fiber,” Opt. Lett., vol. 10, pp. 89-91, 1985; N.J. Halas, D. Krokel, and D. Grishkowsky, “Ultrafast light-controlled optical fiber modulator,” Appl. Phys. Lett., vol. 50, pp. 886-888, 1987; T. Morioka, M. Saruwatari, and A. Takada, “Ultrafast optical multi/demultiplexer utilizing optical Kerr effect in polarization maintaining singlemode fibers,” Electron. Lett., vol. 23, pp. 453–454, 1987.
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D.D. Gusovskii, E.M. Dianov, A.A. Maier, V.B. Neustreuev, V.V. Osiko, A.M. Prokhorov, K. Yu. Sitarkii, and A. Shcherbakov, “Experimental observation of the self-switching of radiation in tunnel-coupled waveguides,” Sov. J. Quantum Electron., vol. 17, pp. 724-727, 1985; A.A. Maier, Yu. N. Serdyuchenko, K. Yu. Sitarskii, M. Ya. Shchelev, and I.A. Shcherbakov, “Breakup of ultrashort pulse in the course of self-switching of light in tunnel coupled waveguides,” Sov. J. Quantum Electron., vol. 17, 735-737, 1987.
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D.D. Gusovskii, E.M. Dianov, A.A. Maier, V.B. Neustreuev, E.I. Shklovskii, and A. Shcherbakov, “Nonlinear light-transfer in tunnel coupled waveguides,” Sov. J. Quantum Electron., vol. 15, pp. 1523-1526, 1985; D.D. Gusovskii, E.M. Dianov, A.A. Maier, V.B. Neustreuev, V.V. Osiko, A.M. Prokhorov, K. Yu. Sitarkii, and A. Shcherbakov, “Experimental observation of the self-switching of radiation in tunnel-coupled waveguides,” Sov. J. Quantum Electron., vol. 17, pp. 724–727, 1985; A.A. Maier, Yu. N. Serdyuchenko, K. Yu. Sitarskii, M. Ya. Shchelev, and I.A. Shcherbakov, “Breakup of ultrashort pulse in the course of self-switching of light in tunnel coupled waveguides,” Sov. J. Quantum Electron., vol. 17, pp. 735737, 1987.
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Neustreuev, V.B.4
Shklovskii, E.I.5
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Ultrafast all-optical switching in a dual-core fiber nonlinear coupler
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S.R. Friberg, Y. Silberberg, M.K. Oliver, M.J. Andrejco, M.A. Saifi, and P.W. Smith, “Ultrafast all-optical switching in a dual-core fiber nonlinear coupler,” Appl. Phys. Lett., vol. 51, pp. 1135–1 137, 1987.
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22
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Experimental observation of polarization instability in a birefringent optical fiber
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S. Trillo, S. Wabnitz, R.H. Stolen, G. Assanto, C.T. Seaton, and G.I. Stegeman, “Experimental observation of polarization instability in a birefringent optical fiber,” Appl. Phys. Lett., vol. 49, pp. 12241226, 1986.
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R.H. Stolen, A. Ashkin, W. Pleibel, and M.J. Dziedzic, “inline fiber-polarization-rocking rotator and filter,” Opt. Lett., vol. 9, pp. 300–302, 1984.
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S. Trillo, S. Wabnitz, W.C. Banyai, N. Finlayson, C.T. Seaton, G.I. Stegeman, and R.H. Stolen, “Observation of ultrafast nonlinear polarization switching induced by polarization instability in a birefringent fiber rocking filter,” IEEE J. Quantum Electron., vol. 25, pp. 104-112, 1989.
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S. Trillo, S. Wabnitz, N. Finlayson, W.C. Banyai, C.T. Seaton, G.I. Stegeman, and R.H. Stolen, “Picosecond nonlinear polarization switching with a fiber filter,” Appl. Phys. Lett., vol. 53, pp. 837839, 1988; S. Trillo, S. Wabnitz, W.C. Banyai, N. Finlayson, C.T. Seaton, G.I. Stegeman, and R.H. Stolen, “Observation of ultrafast nonlinear polarization switching induced by polarization instability in a birefringent fiber rocking filter,” IEEE J. Quantum Electron., vol. 25, pp. 104–112, 1989.
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Santa Fe, NM, Mar., S.R. Friberg, A.M. Weiner, Y. Silberberg, B.G. Sfez, and P.W. Smith, “Femtosecond switching in a dual-core fiber nonlinear coupler,” Opt. Lett., vol. 13, pp. 904-907, 1988.
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Y. Silberberg, A.M. Weiner, S.R. Friberg, B.G. Sfez, and P.W. Smith, “Nonlinear directional coupler as a femtosecond all-optical switch,” in Dig. IGWO′88, Santa Fe, NM, Mar. 1988, vol. 5, pp. 336-338; S.R. Friberg, A.M. Weiner, Y. Silberberg, B.G. Sfez, and P.W. Smith, “Femtosecond switching in a dual-core fiber nonlinear coupler,” Opt. Lett., vol. 13, pp. 904–907, 1988.
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