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Erschienen in: Optical and Quantum Electronics 2/2015

01.02.2015

Investigation of inter-channel crosstalk mitigation by assist light in a TOAD switch by using electrical equivalent circuit model of SOA

verfasst von: I. Sengupta, A. Das Barman

Erschienen in: Optical and Quantum Electronics | Ausgabe 2/2015

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Abstract

The paper investigates in depth analysis of inter-channel crosstalk in a terahertz optical asymmetric de-multiplexer (TOAD) switch. Large signal multi-wavelength circuit model of semiconductor optical amplifier (SOA) has been developed for crosstalk analysis of the TOAD. The circuit model is particularly suitable for numerical simulation of an integrated TOAD switch in presence of chip and package parasitics. Mitigation of inter-channel crosstalk by continuous wave (cw) assist light is studied experimentally and good prediction accuracy with the numerical result is obtained. It is found that the range of input probe power can be increased by 10 dB when assist light is injected and no error floor is observed. Best performance of crosstalk mitigation is obtained when assist light wavelength is set to the edge of 3 dB bandwidth of the SOA.

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Literatur
Zurück zum Zitat Berrettini, G., Simi, A., Malacarne, A., Bogoni, A., Potí, L.: Ultrafast integrable and reconfigurable XNOR, AND, NOR, and NOT photonic logic gate. IEEE Photon. Technol. Lett. 18(8), 917–919 (2006)ADSCrossRef Berrettini, G., Simi, A., Malacarne, A., Bogoni, A., Potí, L.: Ultrafast integrable and reconfigurable XNOR, AND, NOR, and NOT photonic logic gate. IEEE Photon. Technol. Lett. 18(8), 917–919 (2006)ADSCrossRef
Zurück zum Zitat Blow, K.J., Doran, N.J., Nelson, B.P.: Demonstration of the nonlinear fiber loop mirror as an ultrafast all-optical demultiplexer. Electron. Lett. 26(14), 962–964 (1990)CrossRef Blow, K.J., Doran, N.J., Nelson, B.P.: Demonstration of the nonlinear fiber loop mirror as an ultrafast all-optical demultiplexer. Electron. Lett. 26(14), 962–964 (1990)CrossRef
Zurück zum Zitat Chbat, M., Hong, B., Islam, M.N., Soccolich, C.E., Prucnal, P.R.: Ultrafast soliton-trapping AND gate. J. Lightwave Technol. 10(12), 2011–2016 (1992)ADSCrossRef Chbat, M., Hong, B., Islam, M.N., Soccolich, C.E., Prucnal, P.R.: Ultrafast soliton-trapping AND gate. J. Lightwave Technol. 10(12), 2011–2016 (1992)ADSCrossRef
Zurück zum Zitat Chen, W., Wang, A., Zhang, Y., Liu, C., Liu, S.: Circuit model for traveling wave semiconductor laser amplifiers. Solid-State Electron. 44(6), 1009–1012 (2000). (Elsevier)ADSCrossRef Chen, W., Wang, A., Zhang, Y., Liu, C., Liu, S.: Circuit model for traveling wave semiconductor laser amplifiers. Solid-State Electron. 44(6), 1009–1012 (2000). (Elsevier)ADSCrossRef
Zurück zum Zitat Chu, C.Y.J., Ghafouri-Shiraz, H.: Equivalent circuit theory of spontaneous emission power in semiconductor laser optical amplifiers. J. Lightwave Technol. 12(5), 760–767 (1994)ADSCrossRef Chu, C.Y.J., Ghafouri-Shiraz, H.: Equivalent circuit theory of spontaneous emission power in semiconductor laser optical amplifiers. J. Lightwave Technol. 12(5), 760–767 (1994)ADSCrossRef
Zurück zum Zitat Chu, C.Y.J., Ghafouri-Shiraz, H.: Analysis of gain and saturation characteristics of a semiconductor laser optical amplifier using transfer matrices. J. Lightwave Technol. 12(8), 1378–1386 (1994)ADSCrossRef Chu, C.Y.J., Ghafouri-Shiraz, H.: Analysis of gain and saturation characteristics of a semiconductor laser optical amplifier using transfer matrices. J. Lightwave Technol. 12(8), 1378–1386 (1994)ADSCrossRef
Zurück zum Zitat Das Barman, A., Fresi, F., Sengupta, I., Poti, L., Bogoni, A.: Theoretical and experimental investigation of inter-channel crosstalk mitigation by assist light in a TOAD de-multiplexer. In: Proceedings of CODEC-2009, University of Calcutta, India, Dec. 14–16 (2009) Das Barman, A., Fresi, F., Sengupta, I., Poti, L., Bogoni, A.: Theoretical and experimental investigation of inter-channel crosstalk mitigation by assist light in a TOAD de-multiplexer. In: Proceedings of CODEC-2009, University of Calcutta, India, Dec. 14–16 (2009)
Zurück zum Zitat Das Barman, A., Scaffardi, M., Debnath, S., Poti, L., Bogoni, A.: Design tool and its experimental validation for SOA-based photonic signal processing. Opt. Fiber Technol. 15(1), 39–49 (2009). (Elsevier)ADSCrossRef Das Barman, A., Scaffardi, M., Debnath, S., Poti, L., Bogoni, A.: Design tool and its experimental validation for SOA-based photonic signal processing. Opt. Fiber Technol. 15(1), 39–49 (2009). (Elsevier)ADSCrossRef
Zurück zum Zitat Doran, N.J., Wood, D.: Nonlinear-optical loop mirror. Opt. Lett. 13(1), 56–58 (1988)ADSCrossRef Doran, N.J., Wood, D.: Nonlinear-optical loop mirror. Opt. Lett. 13(1), 56–58 (1988)ADSCrossRef
Zurück zum Zitat Eiselt, M.: Optical loop mirror with semiconductor laser amplifier. Electron. Lett. 28(16), 1505–1507 (1992)CrossRef Eiselt, M.: Optical loop mirror with semiconductor laser amplifier. Electron. Lett. 28(16), 1505–1507 (1992)CrossRef
Zurück zum Zitat Eiselt, M., Pieper, W., Weber, H.G.: All-optical high speed demultiplexing with a semiconductor laser amplifier in a loop mirror configuration. Electron. Lett. 29(13), 1167–1168 (1993)CrossRef Eiselt, M., Pieper, W., Weber, H.G.: All-optical high speed demultiplexing with a semiconductor laser amplifier in a loop mirror configuration. Electron. Lett. 29(13), 1167–1168 (1993)CrossRef
Zurück zum Zitat Eiselt, M., Pieper, W., Weber, H.G.: SLALOM: semiconductor laser amplifier in a loop mirror. J. Lightwave Technol. 13(10), 2099–2112 (1995)ADSCrossRef Eiselt, M., Pieper, W., Weber, H.G.: SLALOM: semiconductor laser amplifier in a loop mirror. J. Lightwave Technol. 13(10), 2099–2112 (1995)ADSCrossRef
Zurück zum Zitat Gayen, D.K., Roy, J.N.: All-optical arithmetic unit with the help of terahertz optical asymmetric demultiplexer (TOAD) based tree architecture. Appl. Opt. 47(7), 933–943 (2008)ADSCrossRef Gayen, D.K., Roy, J.N.: All-optical arithmetic unit with the help of terahertz optical asymmetric demultiplexer (TOAD) based tree architecture. Appl. Opt. 47(7), 933–943 (2008)ADSCrossRef
Zurück zum Zitat Gayen, D.K., Roy, J.N., Pal, R.K.: All-optical carry lookahead adder with the help of terahertz optical asymmetric demultiplexer. Optik 123(1), 40–45 (2012). (Elsevier)ADSCrossRef Gayen, D.K., Roy, J.N., Pal, R.K.: All-optical carry lookahead adder with the help of terahertz optical asymmetric demultiplexer. Optik 123(1), 40–45 (2012). (Elsevier)ADSCrossRef
Zurück zum Zitat Hong, W., Huang, D., Zhu, G.: Switching window of an SOA-loop-mirror with SOA sped-up by a CW assist light at transparency wavelength. Opt. Commun. 238(1–3), 151–156 (2004)ADSCrossRef Hong, W., Huang, D., Zhu, G.: Switching window of an SOA-loop-mirror with SOA sped-up by a CW assist light at transparency wavelength. Opt. Commun. 238(1–3), 151–156 (2004)ADSCrossRef
Zurück zum Zitat Kawanishi, S.: Ultrahigh speed optical time-division-multiplexed transmission technology based on optical signal processing. IEEE J. Quantum Electron. 34(11), 2064–2079 (1998)ADSCrossRef Kawanishi, S.: Ultrahigh speed optical time-division-multiplexed transmission technology based on optical signal processing. IEEE J. Quantum Electron. 34(11), 2064–2079 (1998)ADSCrossRef
Zurück zum Zitat Krishnamoorthy, A.V., Goossen, K.W.: Optoelectronic-VLSI: photonics integrated with VLSI circuits. IEEE J. Sel. Top. Quantum Electron. 4(6), 899–912 (1998)CrossRef Krishnamoorthy, A.V., Goossen, K.W.: Optoelectronic-VLSI: photonics integrated with VLSI circuits. IEEE J. Sel. Top. Quantum Electron. 4(6), 899–912 (1998)CrossRef
Zurück zum Zitat Lowery, A.J.: New dynamic semiconductor laser model based on the transmission-line modelling method. IEE Proc. Optoelectron. 134(5), 281–289 (1987)CrossRef Lowery, A.J.: New dynamic semiconductor laser model based on the transmission-line modelling method. IEE Proc. Optoelectron. 134(5), 281–289 (1987)CrossRef
Zurück zum Zitat Maity, G.K., Chattopadhyay, T., Gayen, D.K., Taraphdar, C., Maiti, A.K., Maity, S.P., Roy, J.N.: All-optical binary flip-flop with the help of terahertz optical asymmetric demultiplexer. Nat. Comp. 9(4), 903–916 (2010). (Springer)CrossRefMathSciNet Maity, G.K., Chattopadhyay, T., Gayen, D.K., Taraphdar, C., Maiti, A.K., Maity, S.P., Roy, J.N.: All-optical binary flip-flop with the help of terahertz optical asymmetric demultiplexer. Nat. Comp. 9(4), 903–916 (2010). (Springer)CrossRefMathSciNet
Zurück zum Zitat Mark, J., Mork, J.: Subpicosecond gain dynamics in InGaAsP optical amplifiers: Experiment and Theory. Appl. Phys. Lett. 61(19), 2281–2283 (1992)ADSCrossRef Mark, J., Mork, J.: Subpicosecond gain dynamics in InGaAsP optical amplifiers: Experiment and Theory. Appl. Phys. Lett. 61(19), 2281–2283 (1992)ADSCrossRef
Zurück zum Zitat Mathlouthi, W., Lemieux, P., Salsi, M., Vannucci, A., Bononi, A., Rusch, A.: Fast and efficient dynamic WDM semiconductor optical amplifier model. J. Lightwave Technol. 24(11), 4353–4365 (2006)ADSCrossRef Mathlouthi, W., Lemieux, P., Salsi, M., Vannucci, A., Bononi, A., Rusch, A.: Fast and efficient dynamic WDM semiconductor optical amplifier model. J. Lightwave Technol. 24(11), 4353–4365 (2006)ADSCrossRef
Zurück zum Zitat Mork, J., Mecozzi, A., Eisenstein, G.: The modulation response of a semiconductor laser amplifier. J. Sel. Top. Quantum Electron. 5(3), 851–860 (1999)CrossRef Mork, J., Mecozzi, A., Eisenstein, G.: The modulation response of a semiconductor laser amplifier. J. Sel. Top. Quantum Electron. 5(3), 851–860 (1999)CrossRef
Zurück zum Zitat Sengupta, I., Das Barman, A., Basu, P.K.: Circuit model for analysis of SOA-based photonic switch. J. Opt. Quantum Electron. 41(11), 837–847 (2010). (Springer) Sengupta, I., Das Barman, A., Basu, P.K.: Circuit model for analysis of SOA-based photonic switch. J. Opt. Quantum Electron. 41(11), 837–847 (2010). (Springer)
Zurück zum Zitat Sharaiha, A., Guegan, M.: Equivalent circuit model for multi-electrode semiconductor optical amplifiers and analysis of inline photodetection in bidirectional transmissions. J. Lightwave Technol. 18(5), 700–707 (2000)ADSCrossRef Sharaiha, A., Guegan, M.: Equivalent circuit model for multi-electrode semiconductor optical amplifiers and analysis of inline photodetection in bidirectional transmissions. J. Lightwave Technol. 18(5), 700–707 (2000)ADSCrossRef
Zurück zum Zitat Shen, Z.Y., Wu, L.L.: Reconfigurable optical logic unit with a terahertz optical asymmetric demultiplexer and electro-optic switches. Appl. Opt. 47(21), 3737–3742 (2008)ADSCrossRef Shen, Z.Y., Wu, L.L.: Reconfigurable optical logic unit with a terahertz optical asymmetric demultiplexer and electro-optic switches. Appl. Opt. 47(21), 3737–3742 (2008)ADSCrossRef
Zurück zum Zitat Shtaif, M., Eisenstein, G.: Analytical solution of wave mixing between short optical pulses in a semiconductor optical amplifier. Appl. Phys. Lett. 66(12), 1458–1460 (1995)ADSCrossRef Shtaif, M., Eisenstein, G.: Analytical solution of wave mixing between short optical pulses in a semiconductor optical amplifier. Appl. Phys. Lett. 66(12), 1458–1460 (1995)ADSCrossRef
Zurück zum Zitat Sokoloff, J.P., Prucnal, P.R., Glesk, I., Kane, M.: A terahertz optical asymmetric demultiplexer (TOAD). IEEE Photon. Technol. Lett. 5(7), 787–790 (1993)ADSCrossRef Sokoloff, J.P., Prucnal, P.R., Glesk, I., Kane, M.: A terahertz optical asymmetric demultiplexer (TOAD). IEEE Photon. Technol. Lett. 5(7), 787–790 (1993)ADSCrossRef
Zurück zum Zitat Sokoloff, J.P., Prucnal, P.R., Glesk, I., Kane, M.: Performance of a 50 Gbit/s optical time domain multiplexed system using a terahertz optical asymmetric demultiplexer. IEEE Photon. Technol. Lett. 6(1), 98–100 (1994)ADSCrossRef Sokoloff, J.P., Prucnal, P.R., Glesk, I., Kane, M.: Performance of a 50 Gbit/s optical time domain multiplexed system using a terahertz optical asymmetric demultiplexer. IEEE Photon. Technol. Lett. 6(1), 98–100 (1994)ADSCrossRef
Zurück zum Zitat Stephens, W.E., Joseph, T.R.: A 1.3 \(\mu \) m microwave fiber-optic link using a direct-modulated laser transmitter Fast and efficient dynamic WDM semiconductor optical amplifier model. J. Lightwave Technol. LT–3(2), 308–315 (1985)ADSCrossRef Stephens, W.E., Joseph, T.R.: A 1.3 \(\mu \) m microwave fiber-optic link using a direct-modulated laser transmitter Fast and efficient dynamic WDM semiconductor optical amplifier model. J. Lightwave Technol. LT–3(2), 308–315 (1985)ADSCrossRef
Zurück zum Zitat Swift, G., Ghassemlooy, Z., Ray, A.K., Travis, J.R.: Modelling of semiconductor laser amplifier for the terahertz optical asymmetric demultiplexer. IEE Proc. Circuits Dev. Syst. 145(2), 61–65 (1998)CrossRef Swift, G., Ghassemlooy, Z., Ray, A.K., Travis, J.R.: Modelling of semiconductor laser amplifier for the terahertz optical asymmetric demultiplexer. IEE Proc. Circuits Dev. Syst. 145(2), 61–65 (1998)CrossRef
Zurück zum Zitat Tang, J.M., Spencer, P.S., Shore, K.A.: Influence of fast gain depletion on the dynamic response of TOAD’s. IEEE J. Lightwave Technol. 16(1), 86–90 (1998)ADSCrossRef Tang, J.M., Spencer, P.S., Shore, K.A.: Influence of fast gain depletion on the dynamic response of TOAD’s. IEEE J. Lightwave Technol. 16(1), 86–90 (1998)ADSCrossRef
Zurück zum Zitat Toliver, P., Runser, R.J., Glesk, I., Prucnal, P.R.: Comparison of three nonlinear interferometric optical switch geometries. Opt. Commun. 175(4–6), 365–373 (2000)ADSCrossRef Toliver, P., Runser, R.J., Glesk, I., Prucnal, P.R.: Comparison of three nonlinear interferometric optical switch geometries. Opt. Commun. 175(4–6), 365–373 (2000)ADSCrossRef
Zurück zum Zitat Tucker, R.S., Pope, D.J.: Circuit modeling of the effect of diffusion on damping in a narrow-strip laser. IEEE J. Quantum Electron. QE–19(7), 1179–1183 (1983)ADSCrossRef Tucker, R.S., Pope, D.J.: Circuit modeling of the effect of diffusion on damping in a narrow-strip laser. IEEE J. Quantum Electron. QE–19(7), 1179–1183 (1983)ADSCrossRef
Zurück zum Zitat Usami, M., Tsurusawa, M., Matsushima, Y.: Mechanism for reducing recovery time of optical nonlinearity in semiconductor laser amplifier. Appl. Phys. Lett. 72(21), 2657–2659 (1998)ADSCrossRef Usami, M., Tsurusawa, M., Matsushima, Y.: Mechanism for reducing recovery time of optical nonlinearity in semiconductor laser amplifier. Appl. Phys. Lett. 72(21), 2657–2659 (1998)ADSCrossRef
Zurück zum Zitat Uskov, A., Mork, J., Mark, J.: Theory of short-pulse gain saturation in semiconductor laser amplifiers. IEEE Photon. Technol. Lett. 4(5), 443–446 (1992)ADSCrossRef Uskov, A., Mork, J., Mark, J.: Theory of short-pulse gain saturation in semiconductor laser amplifiers. IEEE Photon. Technol. Lett. 4(5), 443–446 (1992)ADSCrossRef
Zurück zum Zitat Wang, B.C., Baby, V., Tong, W., Xu, L., Friedman, M., Runser, R.J., Glesk, I., Pruncnal, P.R.: A novel fast optical switch based on two cascaded terahertz asymmetric demultiplexers (TOAD). Opt. Express 10(1), 15–23 (2002)ADSCrossRef Wang, B.C., Baby, V., Tong, W., Xu, L., Friedman, M., Runser, R.J., Glesk, I., Pruncnal, P.R.: A novel fast optical switch based on two cascaded terahertz asymmetric demultiplexers (TOAD). Opt. Express 10(1), 15–23 (2002)ADSCrossRef
Zurück zum Zitat Wang, H., Wu, J., Lin, J.: Performance analysis on terahertz optical asymmetric demultiplexer with assist light injection. Opt. Commun. 256(1–3), 83–97 (2005)ADSCrossRef Wang, H., Wu, J., Lin, J.: Performance analysis on terahertz optical asymmetric demultiplexer with assist light injection. Opt. Commun. 256(1–3), 83–97 (2005)ADSCrossRef
Zurück zum Zitat Zoiros, K.E., Chasiotia, R., Koukourlisb, C.S., Houbavlisa, T.: On the output characteristics of a semiconductor optical amplifier driven by an ultrafast optical time division multiplexing pulse train. Optik 118(3), 134–146 (2007). (Elsevier)ADSCrossRef Zoiros, K.E., Chasiotia, R., Koukourlisb, C.S., Houbavlisa, T.: On the output characteristics of a semiconductor optical amplifier driven by an ultrafast optical time division multiplexing pulse train. Optik 118(3), 134–146 (2007). (Elsevier)ADSCrossRef
Metadaten
Titel
Investigation of inter-channel crosstalk mitigation by assist light in a TOAD switch by using electrical equivalent circuit model of SOA
verfasst von
I. Sengupta
A. Das Barman
Publikationsdatum
01.02.2015
Verlag
Springer US
Erschienen in
Optical and Quantum Electronics / Ausgabe 2/2015
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-014-9916-0

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