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- W1982024373 abstract "We report a study of N incorporation behavior into GaP and InP as a function of growth conditions. With increasing N2 flow-rate fraction (N2 flow rate over total group-V gas flow rate), the N composition increases up to a point but then saturates. This might be due to the small solubility of N in these materials or the leveling off of the active N species at higher N2 flow rate. At a fixed N2 flow-rate fraction, the higher the growth temperature Ts is, the less N can be incorporated, which results from the lowering of the sticking coefficient of nitrogen at higher Ts. Although the general trend of the growth condition dependence is the same for N incorporation in InP and GaP, the amount of N that can be incorporated is quite different. With GaP, N as high as 16% can be obtained, while with InP, only less than 1% can be incorporated. This is considered to be due to the very high equilibrium vapor pressure of N2 over InN compared to that over GaN." @default.
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- W1982024373 title "N incorporation in GaN P1 − and InN P1 − using a RF N plasma source" @default.
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- W1982024373 doi "https://doi.org/10.1016/s0022-0248(96)00812-3" @default.
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