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在芯片上使用平面集成光学的单分子检测灵敏度。

Single-molecule detection sensitivity using planar integrated optics on a chip.

作者信息

Yin Dongliang, Deamer David W, Schmidt Holger, Barber John P, Hawkins Aaron R

机构信息

School of Engineering, University of California Santa Cruz 95064, USA.

出版信息

Opt Lett. 2006 Jul 15;31(14):2136-8. doi: 10.1364/ol.31.002136.

Abstract

We present a fully planar integrated optical approach to single-molecule detection based on microfabricated planar networks of intersecting solid and liquid-core waveguides. We study fluorescence from dye molecules in liquid-core antiresonant reflecting optical waveguides, and demonstrate subpicoliter excitation volumes, parallel excitation through multiple pump waveguides, and single-molecule detection sensitivity. Integrated silicon photonics combined with single-molecule detection in solution create a compact, robust, and sensitive platform that has applications in numerous fields ranging from atomic physics to the life sciences.

摘要

我们提出了一种基于交叉的实心和液芯波导的微纳加工平面网络的全平面集成光学单分子检测方法。我们研究了液芯反共振反射光波导中染料分子的荧光,并展示了亚皮升的激发体积、通过多个泵浦波导的并行激发以及单分子检测灵敏度。集成硅光子学与溶液中的单分子检测相结合,创建了一个紧凑、坚固且灵敏的平台,该平台在从原子物理到生命科学的众多领域都有应用。

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