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Published in: Wireless Personal Communications 4/2019

17-09-2018

Semiconductor Laser in Distributed Optical Feedback Regime

Authors: Faisal Ahmed Memon, Francesco Morichetti, Zulfiqar Ali Arain, Umair Ahmed Korai, Andrea Melloni

Published in: Wireless Personal Communications | Issue 4/2019

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Abstract

In this work, we first analyse the behaviour of semiconductor laser in the presence of weak-to-moderate feedback from a single (lumped) and double external cavity setting. Analysis of laser diode in dynamic double cavity configuration shows that the dynamic double cavity does not disturb the stability of the laser device, but it introduces a considerable shift in the emission frequency that is directly related to the feedback strength and the relative phase difference between the phase of the two mirrors, and the phase of electric field inside the laser diode. Conditions for maximum and minimum impact of the laser emission wavelength have been derived. Addressing the issue of distributed optical feedback, optical feedback produced by more than two external mirrors has been also studied. To this aim we have first generalized the Lang and Kobayashi deterministic rate equations model to arbitrary number of external reflectors and provide the corresponding steady-state solution, which is done for the first time. To the best of our knowledge, this kind of study is carried out for the first time.

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Appendix
Available only for authorised users
Literature
1.
go back to reference Lang, R., & Kobayashi, K. (1980). External optical feedback effects on semiconductor injection lasers properties. IEEE Journal of QE Selected Topics in Quantum Electronics, 16, 347–352.CrossRef Lang, R., & Kobayashi, K. (1980). External optical feedback effects on semiconductor injection lasers properties. IEEE Journal of QE Selected Topics in Quantum Electronics, 16, 347–352.CrossRef
2.
go back to reference Tkach, R. W., & Chraplyvy, A. R. (1986). Regimes of feedback effects in 1.5 nm distributed feedback lasers. Journal of Lightwave Technology, 4(11), 1655–1661.CrossRef Tkach, R. W., & Chraplyvy, A. R. (1986). Regimes of feedback effects in 1.5 nm distributed feedback lasers. Journal of Lightwave Technology, 4(11), 1655–1661.CrossRef
3.
go back to reference Sano, T. (1994). Antimode dynamics and chaotic intinerancy in the coherence collapse of semiconductor lasers with optical feedback. Physical Review A, 50(3), 2719–2726.CrossRef Sano, T. (1994). Antimode dynamics and chaotic intinerancy in the coherence collapse of semiconductor lasers with optical feedback. Physical Review A, 50(3), 2719–2726.CrossRef
4.
go back to reference Heil, T., Fischer, I., & ElsaBer, W. (2001). Dynamics of semiconductor lasers subject to delayed optical feedback: The short cavity regime. Physical Review Letters, 87(24), 243901. Heil, T., Fischer, I., & ElsaBer, W. (2001). Dynamics of semiconductor lasers subject to delayed optical feedback: The short cavity regime. Physical Review Letters, 87(24), 243901.
5.
go back to reference Wishon, M. J., Locquet, A., Chang, C. Y., Choi, D., & Citrin, D. S. (2018). Crisis route to chaos in semiconductor lasers subjected to external optical feedback. Physical Review A, 97(3), 033849.CrossRef Wishon, M. J., Locquet, A., Chang, C. Y., Choi, D., & Citrin, D. S. (2018). Crisis route to chaos in semiconductor lasers subjected to external optical feedback. Physical Review A, 97(3), 033849.CrossRef
6.
go back to reference Toomey, J. P., Kane, D. M., McMahon, C., Argyris, A., & Syvridis, D. (2015). Integrated semiconductor laser with optical feedback: Transition from short to long cavity regime. Optics Express, 23(14), 18754–18762.CrossRef Toomey, J. P., Kane, D. M., McMahon, C., Argyris, A., & Syvridis, D. (2015). Integrated semiconductor laser with optical feedback: Transition from short to long cavity regime. Optics Express, 23(14), 18754–18762.CrossRef
7.
go back to reference Zou, Q. (2013). Steady-state behavior of semiconductor laser diodes subject to arbitrary levels of external optical feedback. Optics and Photonics Journal (OPJ), 3(1), 128–134.CrossRef Zou, Q. (2013). Steady-state behavior of semiconductor laser diodes subject to arbitrary levels of external optical feedback. Optics and Photonics Journal (OPJ), 3(1), 128–134.CrossRef
8.
go back to reference Panozzo, M., Quintero-Quiroz, C., Tiana-Alsina, J., Torrent, M. C., & Masoller, C. (2017). Experimental characterization of the transition to coherence collapse in a semiconductor laser with optical feedback. Chaos: An Interdisciplinary Journal of Nonlinear Science, 27(11), 114315.CrossRef Panozzo, M., Quintero-Quiroz, C., Tiana-Alsina, J., Torrent, M. C., & Masoller, C. (2017). Experimental characterization of the transition to coherence collapse in a semiconductor laser with optical feedback. Chaos: An Interdisciplinary Journal of Nonlinear Science, 27(11), 114315.CrossRef
9.
go back to reference Kane, D., & Shore, K. A. (2005). Unlocking dyanimcs diversity optical feedback effects on semiconductor lasers. West Sussex: Wiley.CrossRef Kane, D., & Shore, K. A. (2005). Unlocking dyanimcs diversity optical feedback effects on semiconductor lasers. West Sussex: Wiley.CrossRef
10.
go back to reference Agrawal, G. P. (1984). Line narrowing in a single mode injection laser due to external optical feedback. IEEE Journal of Quantum Electronics, QE-20, 468–471.CrossRef Agrawal, G. P. (1984). Line narrowing in a single mode injection laser due to external optical feedback. IEEE Journal of Quantum Electronics, QE-20, 468–471.CrossRef
11.
go back to reference Ohtsubo, J. (2008). Semiconductor laser stability, instability, and chaos (2nd ed.). Berlin: Springer.MATH Ohtsubo, J. (2008). Semiconductor laser stability, instability, and chaos (2nd ed.). Berlin: Springer.MATH
12.
go back to reference Mulet, J., & Mirasso, C. R. (1999). Numerical statistics of power dropouts based on Lang–Kobayashi model. Physical Review E, 59(5), 5400–5405.CrossRef Mulet, J., & Mirasso, C. R. (1999). Numerical statistics of power dropouts based on Lang–Kobayashi model. Physical Review E, 59(5), 5400–5405.CrossRef
13.
go back to reference Rogister, F., Megret, P., Deparis, O., Blondel, M., & Erneux, T. (1999). Suppression of low-frequency fluctuations and stabilization of a semiconductor laser subjected to optical feedback from a double cavity: Theoretical results. Optics Letters, 24(17), 1218–1220.CrossRef Rogister, F., Megret, P., Deparis, O., Blondel, M., & Erneux, T. (1999). Suppression of low-frequency fluctuations and stabilization of a semiconductor laser subjected to optical feedback from a double cavity: Theoretical results. Optics Letters, 24(17), 1218–1220.CrossRef
14.
go back to reference Rogister, F., Sukow, D. W., Gavrielides, A., Megret, P., Deparis, O., & Blondel, M. (2008). Experimental demonstration of suppression of low frequency fluctuations and stabilization of an external-cavity laser diode. Optics Letters, 25(11), 808–810.CrossRef Rogister, F., Sukow, D. W., Gavrielides, A., Megret, P., Deparis, O., & Blondel, M. (2008). Experimental demonstration of suppression of low frequency fluctuations and stabilization of an external-cavity laser diode. Optics Letters, 25(11), 808–810.CrossRef
Metadata
Title
Semiconductor Laser in Distributed Optical Feedback Regime
Authors
Faisal Ahmed Memon
Francesco Morichetti
Zulfiqar Ali Arain
Umair Ahmed Korai
Andrea Melloni
Publication date
17-09-2018
Publisher
Springer US
Published in
Wireless Personal Communications / Issue 4/2019
Print ISSN: 0929-6212
Electronic ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-018-5931-y

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