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Fingerprints of a size-dependent crossover in the dimensionality of electronic conduction in Au-seeded Ge nanowires

机译:金播种的Ge纳米线中电子传导维数中尺寸依赖的交叉的指纹

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摘要

We studied the electrical transport properties of Au-seeded germanium nanowires with radii ranging from 11 to 80 nm at ambient conditions. We found a non-trivial dependence of the electrical conductivity, mobility and carrier density on the radius size. In particular, two regimes were identified for large (lightly doped) and small (stronger doped) nanowires in which the charge-carrier drift is dominated by electron-phonon and ionized-impurity scattering, respectively. This goes in hand with the finding that the electrostatic properties for radii below ca. 37 nm have quasi one-dimensional character as reflected by the extracted screening lengths.
机译:我们研究了在环境条件下半径为11至80 nm的Au播种锗纳米线的电传输性能。我们发现,电导率,迁移率和载流子密度对半径尺寸的依赖性非常小。特别是,对于大(轻掺杂)和小(重掺杂)纳米线,确定了两种机制,其中载流子漂移分别由电子声子和电离杂质散射控制。这与发现半径小于约2的半径的静电性质相吻合。如所提取的筛选长度所反映的,37 nm具有近似一维特征。

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