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    AuthorAlkhazraji, Emad A. (1)Alshebeili, Saleh (1)Esmail, Maged Abdullah (1)Fathallah, Habib Ali (1)Khan, Mohammed Zahed Mustafa (1)View MoreJournal
    IEEE Photonics Journal (1)
    KAUST Grant NumberKAUST004 (1)PublisherInstitute of Electrical and Electronics Engineers (IEEE) (1)SubjectCoherent communication (1)Hybrid fiber-FSO system (1)Optical access networks (1)Quantum-dash laser diode (1)Self-injection locking (1)View MoreTypeArticle (1)Year (Issue Date)
    2018 (1)
    Item AvailabilityMetadata Only (1)

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    Broadly Tunable Self-Injection Locked InAs/InP Quantum-dash Laser Based Fiber / FSO / Hybrid Fiber-FSO Communication at 1610 nm

    Shemis, Mohamed Adel; Alkhazraji, Emad A.; Ragheb, Amr Mohamed; Khan, Muhammad Talal Ali; Esmail, Maged Abdullah; Fathallah, Habib Ali; Alshebeili, Saleh; Khan, Mohammed Zahed Mustafa (IEEE Photonics Journal, Institute of Electrical and Electronics Engineers (IEEE), 2018-02-26) [Article]
    We report a self-injection locked InAs/InP quantum-dash tunable laser with ~11 nm (1602-1613 nm) tuning window for next generation multiuser ultra-high capacity fiber/free-space optics (FSO)/hybrid fiber-FSO based optical networks. A tunability of >18 independently locked sub-carriers with ~28 dB side mode suppression ratio (SMSR) and stable (± 0.1 dBm) mode power is exhibited, and an estimated small injection ratio of ~-22 dBm is found to sustain locking and SMSR. Error free transmission of 100 Gb/s and 128 Gb/s externally modulated dual-polarization quadrature phase shift keying (DP-QPSK) signals over 20 km single mode fiber (SMF) and 16 m indoor FSO links, are demonstrated across 8 and 4 individual sub-carriers, respectively, thus covering the entire tuning range. Moreover, up to 168 (192) Gb/s successful transmission over 10 km SMF (BTB) and 176 Gb/s over 16 m FSO link, is achieved on ~1610 nm sub-carrier. Finally, a 128 Gb/s DP-QPSK transmission over 11 km SMF -8 m FSO -11 km SMF hybrid system is accomplished, thus paving the potential deployment of this single-chip, cost-effective and energy efficient tunable light source in multi-terabits/s next-generation passive optical networks (NG-PONs).
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