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Erschienen in: Optical and Quantum Electronics 1/2023

01.01.2023

Dynamic power and chirp measurements of a quantum dash semiconductor optical amplifier amplified picosecond pulses using a linear pulse characterization technique

verfasst von: Michael J. Connelly, Javier Romero-Vivas, Pascal Morel, Ammar Sharaiha, Frédéric Pommereau, Catherine Fortin

Erschienen in: Optical and Quantum Electronics | Ausgabe 1/2023

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Abstract

Quantum Dash (QDash) SOAs are of interest as an alternative to quantum dot SOAs, since they have some dot-like properties and are easier to fabricate such as to operate in the 1550 nm region, albeit with longer gain recovery times in the range of hundreds of picoseconds. QDash-SOAs are promising core component is optical subsystems for applications in next generation coherent communications and optical signal processing, which often involve pulse amplification. It is of interest to measure both the dynamic power, phase and associated chirp and thereby the spectrum of typical QDash-SOA amplified pulses. Non-linear measurement techniques are appropriate for pulsewidths less than 5 ps but have low sensitivity for wider pulsewidths often encountered in practice. This paper describes the use of a modified linear pulse characterization technique to measure the dynamic power and phase of the identical pulses of a QDash-SOA amplified 20 GHz repetition rate 19 ps pulsewidth pulse train. The pulse chirp and power from which the pulse chirp and pulse train power spectrum is calculated. The amplified pulse structure is strongly dependent on the amplifier gain and the input pulse shape and energy.

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Literatur
Zurück zum Zitat Agrawal, G.P., Olsson, N.A.: Self-phase modulation and spectral broadening of optical pulses in semiconductor laser amplifiers. IEEE J. Quantum Electron. 25, 2297–2306 (1989)ADSCrossRef Agrawal, G.P., Olsson, N.A.: Self-phase modulation and spectral broadening of optical pulses in semiconductor laser amplifiers. IEEE J. Quantum Electron. 25, 2297–2306 (1989)ADSCrossRef
Zurück zum Zitat Akiyama, T., Sugawara, M., Arakawa, Y.: Quantum-dot semiconductor optical amplifiers. Proc. IEEE. 95, 1757–1766 (2007)CrossRef Akiyama, T., Sugawara, M., Arakawa, Y.: Quantum-dot semiconductor optical amplifiers. Proc. IEEE. 95, 1757–1766 (2007)CrossRef
Zurück zum Zitat Bonk, R., Huber, G., Vallaitis, T., Koenig, S., Schmogrow, R., Hillerkuss, D., Brenot, R., Lelarge, F., Duan, G.H., Sygletos, S., Koos, C., Freude, W., Leuthold, J.: Linear semiconductor optical amplifiers for amplification of advanced modulation formats. Opt. Express 20, 9657–9672 (2012)ADSCrossRef Bonk, R., Huber, G., Vallaitis, T., Koenig, S., Schmogrow, R., Hillerkuss, D., Brenot, R., Lelarge, F., Duan, G.H., Sygletos, S., Koos, C., Freude, W., Leuthold, J.: Linear semiconductor optical amplifiers for amplification of advanced modulation formats. Opt. Express 20, 9657–9672 (2012)ADSCrossRef
Zurück zum Zitat Connelly, M.J.: Semiconductor optical amplifier fundamentals. In: Piprek, J. (ed.) Handbook of Optoelectronic Device Modeling and Simulation: Fundamentals, Materials, Nanostructures, LEDs, and Amplifiers. CRC Press (2017) Connelly, M.J.: Semiconductor optical amplifier fundamentals. In: Piprek, J. (ed.) Handbook of Optoelectronic Device Modeling and Simulation: Fundamentals, Materials, Nanostructures, LEDs, and Amplifiers. CRC Press (2017)
Zurück zum Zitat Connelly, M.J.: Optical Amplifiers: SOAs. In: Guenther, B., Steel, D. (eds.) Encyclopedia of Modern Optics, vol. 2. Elsevier (2018a) Connelly, M.J.: Optical Amplifiers: SOAs. In: Guenther, B., Steel, D. (eds.) Encyclopedia of Modern Optics, vol. 2. Elsevier (2018a)
Zurück zum Zitat Connelly, M.J.: Coherent lightwave systems. In: Guenther, B., Steel, D. (eds.) Encyclopedia of Modern Optics, vol. 2. Elsevier (2018b) Connelly, M.J.: Coherent lightwave systems. In: Guenther, B., Steel, D. (eds.) Encyclopedia of Modern Optics, vol. 2. Elsevier (2018b)
Zurück zum Zitat Connelly, M.J., Krzczanowicz, L., Morel, P., Sharaiha, A., Lelarge, F., Brenot, R., Joshi, S., Barbet, S.: 40 Gb/s NRZ-DQPSK data wavelength conversion with amplitude regeneration using four-wave mixing in a quantum dash semiconductor optical amplifier: Front. Optoelectron 9, 341–345 (2016) Connelly, M.J., Krzczanowicz, L., Morel, P., Sharaiha, A., Lelarge, F., Brenot, R., Joshi, S., Barbet, S.: 40 Gb/s NRZ-DQPSK data wavelength conversion with amplitude regeneration using four-wave mixing in a quantum dash semiconductor optical amplifier: Front. Optoelectron 9, 341–345 (2016)
Zurück zum Zitat Connelly, M.J., Romero-Vivas, J., Meehan, A., Krzczanowicz, L.: Dynamic power and chirp measurements of amplified 19 ps pulses in traveling-wave and reflective semiconductor optical amplifiers using a linear pulse characterization technique. Opt. Quan. Electron. 51, 1–10 (2019) Connelly, M.J., Romero-Vivas, J., Meehan, A., Krzczanowicz, L.: Dynamic power and chirp measurements of amplified 19 ps pulses in traveling-wave and reflective semiconductor optical amplifiers using a linear pulse characterization technique. Opt. Quan. Electron. 51, 1–10 (2019)
Zurück zum Zitat Connelly, M.J., Romero-Vivas, J., Meehan, A., Krzczanowicz, L.: Dynamic power and chirp measurements of electroabsorption and Mach-Zehnder modulator pulse generators and chirp factor extraction using a linear pulse characterization technique. Opt. Laser Technol. 121, 105783 (2020)CrossRef Connelly, M.J., Romero-Vivas, J., Meehan, A., Krzczanowicz, L.: Dynamic power and chirp measurements of electroabsorption and Mach-Zehnder modulator pulse generators and chirp factor extraction using a linear pulse characterization technique. Opt. Laser Technol. 121, 105783 (2020)CrossRef
Zurück zum Zitat Dorrer, C., Inuk, K.: Complete temporal characterization of short optical pulses by simplified chronocyclic tomography. Opt. Lett. 28, 1481–1483 (2003)ADSCrossRef Dorrer, C., Inuk, K.: Complete temporal characterization of short optical pulses by simplified chronocyclic tomography. Opt. Lett. 28, 1481–1483 (2003)ADSCrossRef
Zurück zum Zitat Ji, Y., Li, Y., Wu, J., Wang, H., Lin, J.: Carrier-suppressed 160-GHz pulse-train generation using a dual-parallel Mach-Zehnder modulator. Opt. Eng. 52, 05500 (2013)CrossRef Ji, Y., Li, Y., Wu, J., Wang, H., Lin, J.: Carrier-suppressed 160-GHz pulse-train generation using a dual-parallel Mach-Zehnder modulator. Opt. Eng. 52, 05500 (2013)CrossRef
Zurück zum Zitat Lelarge, F., Dagens, B., Renaudier, J., Brenot, R., Accard, A., van Dijk, F., Make, D., Le Gouezigou, O., Provost, J., Poingt, F., Landreau, J., Drisse, O., Derouin, E., Rousseau, B., Pommereau, F., Guang-Hua, D.: Recent advances on InAs/InP quantum dash based semiconductor lasers and optical amplifiers operating at 1.55 μm. IEEE J. Sel. Top. Quant. Elect. 13, 111–124 (2007)ADSCrossRef Lelarge, F., Dagens, B., Renaudier, J., Brenot, R., Accard, A., van Dijk, F., Make, D., Le Gouezigou, O., Provost, J., Poingt, F., Landreau, J., Drisse, O., Derouin, E., Rousseau, B., Pommereau, F., Guang-Hua, D.: Recent advances on InAs/InP quantum dash based semiconductor lasers and optical amplifiers operating at 1.55 μm. IEEE J. Sel. Top. Quant. Elect. 13, 111–124 (2007)ADSCrossRef
Zurück zum Zitat Moreno, V., Connelly, M.J., Romero-Vivas, J., Krzczanowicz, L., Mora, J., Muriel, M.A., Capmany, J.: Integrated 16-ps Pulse Generator Based on a Reflective SOA-EAM for UWB Schemes. IEEE Photonics Tech. Lett. 28, 2180–2182 (2016)ADSCrossRef Moreno, V., Connelly, M.J., Romero-Vivas, J., Krzczanowicz, L., Mora, J., Muriel, M.A., Capmany, J.: Integrated 16-ps Pulse Generator Based on a Reflective SOA-EAM for UWB Schemes. IEEE Photonics Tech. Lett. 28, 2180–2182 (2016)ADSCrossRef
Zurück zum Zitat Ngo, M.N., Girault, G., Gay, M., Bramerie, L., Simon, J.-C., Brenot, R., Lelarge, F., Duan, G.-H.: Suppression of slow gain recovery in ultralong quantum-dash semiconductor optical amplifier emitting at 1.55μm. Optics Comms 284, 4910–4913 (2011)ADSCrossRef Ngo, M.N., Girault, G., Gay, M., Bramerie, L., Simon, J.-C., Brenot, R., Lelarge, F., Duan, G.-H.: Suppression of slow gain recovery in ultralong quantum-dash semiconductor optical amplifier emitting at 1.55μm. Optics Comms 284, 4910–4913 (2011)ADSCrossRef
Zurück zum Zitat Trebino, R., DeLong, K.W., Fittinghoff, D.N., Sweetser, J.N., Krumbugel, M.A., Richman, B.A., Kane, D.J.: Measuring ultrashort laser pulses in the time-frequency domain using frequency-resolved optical gating. Rev. Sci. Instrum. 68, 3277–3295 (1997)ADSCrossRef Trebino, R., DeLong, K.W., Fittinghoff, D.N., Sweetser, J.N., Krumbugel, M.A., Richman, B.A., Kane, D.J.: Measuring ultrashort laser pulses in the time-frequency domain using frequency-resolved optical gating. Rev. Sci. Instrum. 68, 3277–3295 (1997)ADSCrossRef
Zurück zum Zitat Zilkie, A.J., Meier, J., Mojahedi, M., Poole, P.J., Barrios, P., Poitras, D., Rotter, T.J., Yang, C., Stintz, A., Malloy, K.J., Smith, P.W.: Carrier dynamics of quantum-dot, quantum-dash, and quantum-well semiconductor optical amplifiers operating at 1.55 μm. IEEE J. Quantum Electronics. 43, 982–991 (2007)ADSCrossRef Zilkie, A.J., Meier, J., Mojahedi, M., Poole, P.J., Barrios, P., Poitras, D., Rotter, T.J., Yang, C., Stintz, A., Malloy, K.J., Smith, P.W.: Carrier dynamics of quantum-dot, quantum-dash, and quantum-well semiconductor optical amplifiers operating at 1.55 μm. IEEE J. Quantum Electronics. 43, 982–991 (2007)ADSCrossRef
Metadaten
Titel
Dynamic power and chirp measurements of a quantum dash semiconductor optical amplifier amplified picosecond pulses using a linear pulse characterization technique
verfasst von
Michael J. Connelly
Javier Romero-Vivas
Pascal Morel
Ammar Sharaiha
Frédéric Pommereau
Catherine Fortin
Publikationsdatum
01.01.2023
Verlag
Springer US
Erschienen in
Optical and Quantum Electronics / Ausgabe 1/2023
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-022-04301-7

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