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首页> 外文期刊>Applied Physics Letters >Microcavity lasing behavior of oriented hexagonal ZnO nanowhiskers grown by hydrothermal oxidation
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Microcavity lasing behavior of oriented hexagonal ZnO nanowhiskers grown by hydrothermal oxidation

机译:水热氧化法制备取向六角形ZnO纳米晶须的微腔激射行为

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摘要

The highly aligned ZnO whiskers, which are grown by hydrothermal oxidation of metallic zinc plate in the presence of ethylenediamine molecules, exhibit single and/or a few modes of supernarrow spectral emissions (~0.7 nm) at near 378 nm and negligible deep level defects emissions. Time-integrated and time-resolved photoluminescence show that the supernarrow spectral peaks are due to the laser action with an excitation threshold about 70 μJ/cm~(2) and emission lifetime of <30 ps. The lasing emission is highly polarized along the excitation laser polarization direction. The low lasing threshold, stable and regular supernarrow longitudinal modes, and strong lasing polarization effects can be well explained by the model of microcavity laser where the two end facets of whisker form the microcavity.
机译:通过在乙二胺分子存在下对金属锌板进行水热氧化而生成的高度对齐的ZnO晶须,在378 nm附近表现出单模式和/或几种模式的超窄光谱发射(约0.7 nm),并且深层缺陷发射可忽略不计。时间积分和时间分辨的光致发光表明,超窄光谱峰是由于激光作用引起的,其激发阈值约为70μJ/ cm〜(2),发射寿命小于30 ps。激光发射沿激发激光偏振方向是高度偏振的。微腔激光器模型可以很好地解释低激射阈值,稳定且规则的超窄纵向模式以及强烈的激射偏振效应,其中晶须的两个端面构成了微腔。

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