首页> 外文期刊>Journal of Semiconductors >Tubular/helical architecture construction based on rolled-up AlN nanomembranes and resonance as optical microcavity
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Tubular/helical architecture construction based on rolled-up AlN nanomembranes and resonance as optical microcavity

机译:基于卷起的ALN纳米爆发的管状/螺旋式建筑结构和光学微腔的共振

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摘要

Aluminum nitride (AlN) has attracted a great amount of interest due to the fact that these group III-V semiconductors present direct band gap behavior and are compatible with current micro-electro-mechanical systems. In this work, three dimensional (3D) AlN architectures including tubes and helices were constructed by rolling up AlN nanomembranes grown on a silicon-on-insulator wafer via magnetron sputtering. The properties of the AlN membrane were characterized through transmission electron microscopy and X-ray diffraction. The thickness of AlN nanomembranes could be tuned via the RIE thinning method, and thus micro-tubes with different diameters were fabricated. The intrinsic strain in AlN membranes was investigated via micro-Raman spectroscopy, which agrees well with theory prediction. Whispering gallery mode was observed in AlN tubular optical microcavity in photoluminescence spectrum. A postprocess involving atomic layer deposition and R6G immersion were employed on as-fabricated AlN tubes to promote the Q-factor. The AlN tubular micro-resonators could offer a novel design route for Si-based integrated light sources. In addition, the rolled-up technology paves a new way for AlN 3D structure fabrication, which is promising for AlN application in MEMS and photonics fields.
机译:氮化铝(ALN)引起了大量的兴趣,因为这些组III-V半导体目前直接的带隙行为,并且与目前的微机电系统相容。在这项工作中,通过滚动在绝缘体晶片上通过磁控溅射卷起的Aln Nanombranes来构建包括管和螺旋的三维(3D)ALN架构。通过透射电子显微镜和X射线衍射表征ALN膜的性质。 AlN纳米爆炸的厚度可以通过RIE稀释方法调节,因此制造具有不同直径的微管。通过微拉曼光谱研究AlN膜中的内在菌株,这与理论预测很好地同意。在光致发光光谱中,在Aln管状光学微腔中观察到耳语廊道模式。涉及原子层沉积和R6G浸渍的后处理用于以制造的ALN管,以促进Q系数。 ALN管状微谐振器可以为SI的集成光源提供新颖的设计路线。此外,卷起技术为ALN 3D结构制造铺平了一种新的方式,这对MEMS和光子田的ALN应用是有前途的。

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