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- W2063552904 abstract "Band-edge optical properties of highly strained In(Ga)As/InGaAs quantum wells on InP with the bandgap wavelength longer than 2 mum are analyzed by using 6- and 8-band kmiddotp theory. It is demonstrated that the 8-band model is indispensable for the analysis of highly strained In(Ga)As/InGaAs quantum wells due to the strong coupling between conduction and valence bands induced by large strain in the well. Furthermore, an energy correction originating from the interaction between the spin-orbit coupling and the strain, which has been discarded in conventional kmiddotp theory, is taken into account, and the role of the effect for highly strained quantum wells is discussed. The photoluminescence peak wavelength and absorption spectra of In(Ga)As/InGaAs quantum wells calculated by 8-band model are in excellent agreement with those obtained by experiment, showing the validity of the results presented here." @default.
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- W2063552904 date "2009-09-01" @default.
- W2063552904 modified "2023-10-17" @default.
- W2063552904 title "Successful Application of the 8-band ${mbi{k}}{cdot}$${mbi{p}}$ Theory to Optical Properties of Highly Strained In(Ga)As/InGaAs Quantum Wells With Strong Conduction-Valence Band Coupling" @default.
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- W2063552904 doi "https://doi.org/10.1109/jqe.2009.2021776" @default.
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