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用于生物医学传感的光学微球谐振器。

Optical microspherical resonators for biomedical sensing.

机构信息

MDF Lab, Istituto di Fisica Applicata Nello Carrara (IFAC CNR), Via Madonna del Piano 10, 50019 Sesto Fiorentino, Firenze, Italy.

出版信息

Sensors (Basel). 2011;11(1):785-805. doi: 10.3390/s110100785. Epub 2011 Jan 12.

Abstract

Optical resonators play an ubiquitous role in modern optics. A particular class of optical resonators is constituted by spherical dielectric structures, where optical rays are total internal reflected. Due to minimal reflection losses and to potentially very low material absorption, these guided modes, known as whispering gallery modes, can confer the resonator an exceptionally high quality factor Q, leading to high energy density, narrow resonant-wavelength lines and a lengthy cavity ringdown. These attractive characteristics make these miniaturized optical resonators especially suited as laser cavities and resonant filters, but also as very sensitive sensors. First, a brief analysis is presented of the characteristics of microspherical resonators, of their fabrication methods, and of the light coupling techniques. Then, we attempt to overview some of the recent advances in the development of microspherical biosensors, underlining a number of important applications in the biomedical field.

摘要

光学谐振器在现代光学中起着无处不在的作用。一类特殊的光学谐振器由球形介电结构构成,其中光射线被全内反射。由于最小的反射损耗和潜在的非常低的材料吸收,这些导模,称为 whispering gallery 模,可以赋予谐振器极高的品质因数 Q,从而导致高能量密度、窄共振波长线和长腔衰减。这些吸引人的特性使得这些微型光学谐振器特别适合作为激光腔和共振滤波器,也适合作为非常敏感的传感器。首先,简要分析了微球谐振器的特性、制造方法和光耦合技术。然后,我们试图概述微球生物传感器发展的一些最新进展,强调在生物医学领域的一些重要应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/102e/3274111/899335d953b5/sensors-11-00785f1.jpg

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