Electro-optical detector for lab-on-chip applications

G. Cesare, R. Asquini, A. Buzzin, D. Caputo
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引用次数: 3

Abstract

This paper presents the integration on the same glass substrate of an amorphous silicon photodiode and a diffused waveguide, to achieve an integrated evanescent waveguide sensor. Simulations performed with COMSOL Multiphysics show that the coupling efficiency between the waveguide and the photosensor is strongly affected by the presence of the passivation layer, and by thickness and refractive index of the transparent electrode of the photodiode. A first prototype has been fabricated using standard microelectronics techniques in a 6-masks process fiow. Electro-optical characterization, performed measuring the diode photocurrent with and without lighting the waveguide, shows the effectiveness of the optical coupling between diode and waveguide, and suggest its use for on-chip detection in lab-on-chip applications.
用于芯片上实验室应用的光电探测器
本文介绍了在同一玻璃衬底上集成非晶硅光电二极管和扩散波导,以实现集成的倏逝波导传感器。利用COMSOL Multiphysics进行的仿真表明,钝化层的存在以及光电二极管透明电极的厚度和折射率对波导与光敏传感器之间的耦合效率有很大影响。第一个原型已经在6掩模工艺流程中使用标准微电子技术制造。电光特性,执行测量二极管光电流有和没有照明波导,显示二极管和波导之间的光耦合的有效性,并建议其用于芯片上的实验室检测芯片上的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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