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不同温度下磷化铟纳米线组件的光学性质。

Optical properties of indium phosphide nanowire ensembles at various temperatures.

机构信息

Baskin School of Engineering, University of California Santa Cruz, Santa Cruz, CA 95064, USA.

出版信息

Nanotechnology. 2010 Sep 3;21(35):355702. doi: 10.1088/0957-4484/21/35/355702. Epub 2010 Aug 6.

Abstract

Ensembles that contain two types (zincblende and wurtzite) of indium phosphide nanowires grown on non-single crystalline surfaces were studied by micro-photoluminescence and micro-Raman spectroscopy at various low temperatures. The obtained spectra are discussed with the emphasis on the effects of differing lattice types, geometries, and crystallographic orientations present within an ensemble of nanowires grown on non-single crystalline surfaces. In the photoluminescence spectra, a typical Varshni dependence of band gap energy on temperature was observed for emissions from zincblende nanowires and in the high temperature regime energy transfer from excitonic transitions and band-edge transitions was identified. In contrast, the photoluminescence emissions associated with wurtzite nanowires were rather insensitive to temperature. Raman spectra were collected simultaneously from zincblende and wurtzite nanowires coexisting in an ensemble. Raman peaks of the wurtzite nanowires are interpreted as those related to the zincblende nanowires by a folding of the phonon dispersion.

摘要

在不同的低温下,通过微光致发光和微拉曼光谱研究了生长在非单晶表面的包含两种类型(闪锌矿和纤锌矿)的磷化铟纳米线的集合体。获得的光谱通过强调在非单晶表面生长的纳米线集合体中存在的不同晶格类型、几何形状和晶体学取向的影响进行了讨论。在光致发光光谱中,观察到来自闪锌矿纳米线的发射的能带隙能量对温度的典型 Varshni 依赖性,并且在高温区识别出从激子跃迁和带边跃迁的能量转移。相比之下,与纤锌矿纳米线相关的光致发光发射对温度相当不敏感。同时从生长在集合体中的闪锌矿和纤锌矿纳米线中收集拉曼光谱。纤锌矿纳米线的拉曼峰通过声子色散的折叠来解释为与闪锌矿纳米线相关的峰。

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