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Conductivity of nanoporous InP membranes investigated using terahertz spectroscopy

机译:太赫兹光谱研究纳米多孔InP膜的电导率

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We have investigated the terahertz conductivity of extrinsic and photoexcited electrons in nanoporous indium phosphide (InP) at different pore densities and orientations. The form of electronic transport in the film was found to differ significantly from that for bulk InP. While photo-generated electrons showed Drude-like transport, the behaviour for extrinsic electrons deviated significantly from the Drude model. Time-resolved photoconductivity measurements found that carrier recombination was slow, with lifetimes exceeding 1 ns for all porosities and orientations. When considered together, these findings suggest that the surfaces created by the nanopores strongly alter the dynamics of both extrinsic and photoexcited electrons.
机译:我们已经研究了纳米多孔磷化铟(InP)中不同孔隙密度和方向的非本征和光激发电子的太赫兹电导率。发现薄膜中的电子传输形式与块状InP的电子传输形式显着不同。虽然光生电子显示出类似Drude的传输,但非本征电子的行为却与Drude模型明显不同。时间分辨的光电导率测量发现载流子重组很慢,所有孔隙和取向的寿命都超过1 ns。当一起考虑时,这些发现表明由纳米孔产生的表面强烈地改变了非本征电子和光激发电子的动力学。

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