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    Author
    Bhattacharya, Pallab K. (1)
    Deshpande, Saniya (1)Frost, Thomas (1)Hazari, Arnab Shashi (1)Jahangir, Shafat (1)View MoreDepartmentAdvanced Nanofabrication, Imaging and Characterization Core Lab (1)Computer, Electrical and Mathematical Sciences and Engineering (CEMSE) Division (1)
    Electrical Engineering Program (1)
    Photonics Laboratory (1)Physical Characterization (1)Journal
    Nano Letters (1)
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    GaN Nanowire (1)
    Molecular Beam Eptiaxy (1)
    Nanowire Laser (1)Quantum Disk-in-Nanowire (1)View MoreTypeArticle (1)Year (Issue Date)
    2014 (1)
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    Monolithic electrically injected nanowire array edge-emitting laser on (001) silicon

    Frost, Thomas; Jahangir, Shafat; Stark, Ethan; Deshpande, Saniya; Hazari, Arnab Shashi; Zhao, Chao; Ooi, Boon S.; Bhattacharya, Pallab K. (Nano Letters, American Chemical Society (ACS), 2014-07-03) [Article]
    A silicon-based laser, preferably electrically pumped, has long been a scientific and engineering goal. We demonstrate here, for the first time, an edge-emitting InGaN/GaN disk-in-nanowire array electrically pumped laser emitting in the green (λ = 533 nm) on (001) silicon substrate. The devices display excellent dc and dynamic characteristics with values of threshold current density, differential gain, T0 and small signal modulation bandwidth equal to 1.76 kA/cm2, 3 × 10-17 cm2, 232 K, and 5.8 GHz respectively under continuous wave operation. Preliminary reliability measurements indicate a lifetime of 7000 h. The emission wavelength can be tuned by varying the alloy composition in the quantum disks. The monolithic nanowire laser on (001)Si can therefore address wide-ranging applications such as solid state lighting, displays, plastic fiber communication, medical diagnostics, and silicon photonics. © 2014 American Chemical Society.
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