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- W2004678285 abstract "The metal modulated epitaxy (MME) growth technique is reported as a reliable approach to obtain reproducible large hole concentrations in Mg-doped GaN grown by plasma-assisted molecular-beam epitaxy on c-plane sapphire substrates. An extremely Ga-rich flux was used, and modulated with the Mg source according to the MME growth technique. The shutter modulation approach of the MME technique allows optimal Mg surface coverage to build between MME cycles and Mg to incorporate at efficient levels in GaN films. The maximum sustained concentration of Mg obtained in GaN films using the MME technique was above 7×1020cm−3, leading to a hole concentration as high as 4.5×1018cm−3 at room temperature, with a mobility of 1.1cm2V−1s−1 and a resistivity of 1.3Ωcm. At 580K, the corresponding values were 2.6×1019cm−3, 1.2cm2V−1s−1, and 0.21Ωcm, respectively. Even under strong white light, the sample remained p-type with little change in the electrical parameters." @default.
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- W2004678285 date "2008-07-15" @default.
- W2004678285 modified "2023-09-30" @default.
- W2004678285 title "Reproducible increased Mg incorporation and large hole concentration in GaN using metal modulated epitaxy" @default.
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- W2004678285 doi "https://doi.org/10.1063/1.2953089" @default.
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