2004Applied Physics LettersRequires access

Electrical conduction properties of n-type Si-doped AlN with high electron mobility (>100cm2V−1s−1)

Yoshitaka Taniyasu, Makoto Kasu, Toshiki Makimōto

Open publisher page 140 citations

Abstract

For n-type Si-doped AlN, we have obtained an electron mobility and concentration of 125cm2V−1s−1 and 1.75×1015cm−3 at 300K, respectively. At 250K, the mobility reached the maximum of 141cm2V−1s−1. To explain the temperature dependence of the mobility, we calculated mobilities limited by specific scattering mechanisms. We found that the mobility is limited by neutral impurity scattering rather than ionized impurity scattering or lattice scattering because of a large donor ionization energy (∼250meV).

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For n-type Si-doped AlN, we have obtained an electron mobility and concentration of 125cm2V−1s−1 and 1.75×1015cm−3 at 300K, respectively. At 250K, the mobility reached the maximum of 141cm2V−1s−1. To explain the temperature dependence of the mobility, we calculated mobilities limited by specific scattering mechanisms. We found that the mobility is limited by neutral impurity scattering rather than ionized impurity scattering or lattice scattering because of a large donor ionization energy (∼250meV).

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Available abstract

For n-type Si-doped AlN, we have obtained an electron mobility and concentration of 125cm2V−1s−1 and 1.75×1015cm−3 at 300K, respectively. At 250K, the mobility reached the maximum of 141cm2V−1s−1. To explain the temperature dependence of the mobility, we calculated mobilities limited by specific scattering mechanisms. We found that the mobility is limited by neutral impurity scattering rather than ionized impurity scattering or lattice scattering because of a large donor ionization energy (∼250meV).

Key concepts: Ionized impurity scattering, Electron mobility, Scattering, Doping, Impurity, Electron, Condensed matter physics, Ionization

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