Chinese Journal of Lasers, Volume. 25, Issue 4, 289(1998)

Theoretical Analysis for InGaAs(P) Strain compensated Multiple quantum well Lasers

[in Chinese], [in Chinese], [in Chinese], and [in Chinese]
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    References(9)

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    [2] [2] C. P. Seltzer, S. D. Perrin, M. C. Tatham et al.. Zero-net-strain multiquantum well lasers. Electron. Lett., 1991, 27(13): 1268~1270

    [3] [3] S.-H. Park, W.-G. Jeong, B.-D. Choe.Strain-compensated InGaAs/InGaAsP quantum well lasers lattice matched to GaAs. Appl. Phys. Lett., 1995, 66(2): 201~203

    [4] [4] S. Adachi. Material parameters of InGaAsP and related binaries. J. Appl. Phys., 1982, 53: 8775~8792

    [5] [5] Y. Zou, P. Grodzinski, E. P. Menu et al.. Characterization and determination of the band-gap discontinuity of the InxGa1-xAsGaAs pseudomorphic quantum well. Appl. Phys. Lett., 1991, 58(6): 601~603

    [6] [6] K. Domen, H. Ishikawa, M. Sugawara et al.. Effect of spin-orbit split-off band on optical gain in AlGaInPGa/InP strained quantum wells. Appl. Phys. Lett., 1995, 66(4): 466~468

    [7] [7] Su-Huai Wei, Alex Zunger. Strain effectson the spectra of spontaneously ordered GaxIn1-xP. Appl. Phys. Lett., 1994, 64(6): 757~759

    [8] [8] P. L. Derry, R. J. Fu, C. S. Hong et al.. Analysis of the high temperature characteristics of InGaAsAlGaAs strained quantum-well lasers. IEEE J. Quantum Electron., 1992, 28(12): 2678~2705

    [9] [9] C. H. Lin, Y. H. Lo. Empirical formulas for design and optimization of 1.55 μm InGaAs/InGaAsP strained-quantum-well lasers. IEEE. Photon. Tech. Lett., 1993, 5(3): 288~230

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    [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Theoretical Analysis for InGaAs(P) Strain compensated Multiple quantum well Lasers[J]. Chinese Journal of Lasers, 1998, 25(4): 289

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    Paper Information

    Category: Laser physics

    Received: Jan. 20, 1997

    Accepted: --

    Published Online: Oct. 18, 2006

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