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使用聚焦光子晶体阵列的集成光学力传感器。

Integrated optical force sensors using focusing photonic crystal arrays.

作者信息

Guo Jingkun, Norte Richard A, Gröblacher S

出版信息

Opt Express. 2017 Apr 17;25(8):9196-9203. doi: 10.1364/OE.25.009196.

Abstract

Mechanical oscillators are at the heart of many sensor applications. Recently several groups have developed oscillators that are probed optically, fabricated from high-stress silicon nitride films. They exhibit outstanding force sensitivities of a few aN/Hz and can also be made highly reflective, for efficient detection. The optical read-out usually requires complex experimental setups, including positioning stages and bulky cavities, making them impractical for real applications. In this paper we propose a novel way of building fully integrated all-optical force sensors based on low-loss silicon nitride mechanical resonators with a photonic crystal reflector. We can circumvent previous limitations in stability and complexity by simulating a suspended focusing photonic crystal, purely made of silicon nitride. Our design allows for an all integrated sensor, built out of a single block that integrates a full Fabry-Pérot cavity, without the need for assembly or alignment. The presented simulations will allow for a radical simplification of sensors based on high-Q silicon nitride membranes. Our results comprise, to the best of our knowledge, the first simulations of a focusing mirror made from a mechanically suspended flat membrane with subwavelength thickness. Cavity lengths between a few hundred µm and mm should be directly realizable.

摘要

机械振荡器是许多传感器应用的核心。最近,有几个研究小组开发了由高应力氮化硅薄膜制成的、通过光学方式探测的振荡器。它们表现出几阿牛顿每赫兹的出色力灵敏度,并且还可以制成高反射率的,以实现高效检测。光学读出通常需要复杂的实验装置,包括定位台和大型腔体,这使得它们在实际应用中不切实际。在本文中,我们提出了一种基于具有光子晶体反射器的低损耗氮化硅机械谐振器构建全集成全光学力传感器的新方法。我们可以通过模拟纯由氮化硅制成的悬浮聚焦光子晶体来规避先前在稳定性和复杂性方面的限制。我们的设计允许构建一个全集成传感器,该传感器由一个集成了完整法布里 - 珀罗腔的单个模块制成,无需组装或对准。所展示的模拟将极大地简化基于高Q值氮化硅膜的传感器。据我们所知,我们的结果包括对由机械悬浮的亚波长厚度平面膜制成的聚焦镜的首次模拟。几百微米到毫米之间的腔长应该可以直接实现。

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