首页> 外文期刊>Journal of Micromechanics and Microengineering >Monolithically integrated cantilevers with self-aligned tips for wavelength tuning in a photonic crystal cavity-based channel-drop filter
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Monolithically integrated cantilevers with self-aligned tips for wavelength tuning in a photonic crystal cavity-based channel-drop filter

机译:具有自对准尖端的单片集成悬臂,可在基于光子晶体腔的通道降滤器中进行波长调谐

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摘要

A technology to monolithically integrate micro-bimorph cantilevers equipped with tips that are self-aligned with respect to the holes of a 2D photonic crystal cavity-based channel-drop filter is presented. On electrostatic actuation, the tips move into the holes and provide electromechano-optical modulation of light. The technology allows the fabrication of tips on specific photonic crystal holes by controlling the hole diameter and the sacrificial layer thickness. The integrated device is both mechanically and optically characterized. A 180 pm wavelength shift at the first band edge of the photonic crystal cavity-based channel-drop filter is measured on the application of a 2 V dc voltage to the cantilever. This CMOS-compatible device is designed to operate in the C-band of the telecommunication wavelengths and constitutes a promising candidate for future integrated all-optical devices.
机译:提出了一种单片集成微双晶片悬臂的技术,该悬臂配备了相对于基于2D光子晶体腔的通道降滤器的孔自对准的尖端。在静电激励下,尖端移入孔中并提供光的机电光调制。通过控制孔径和牺牲层厚度,该技术允许在特定的光子晶体孔上制造尖端。集成装置在机械和光学上都具有特征。在向悬臂施加2 V dc电压时,测量了基于光子晶体腔的通道降滤光片的第一频带边缘的180 pm波长偏移。这款兼容CMOS的设备旨在在电信波长的C波段工作,并且是未来集成全光设备的有希望的候选者。

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