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Novel Detection Scheme for Optical Biosensing Using Whispering Gallery Modes in Clusters of Dielectric Particles

机译:介电粒子簇中潜水廊形式的光学生物沉积的新型检测方案

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We present a novel concept for an optical biosensor based on Whispering Gallery Mode (WGM) excitations in clusters of spherical microresonators. WGM are specific optical modes that arise when light is trapped by Total Internal Reflection (TIR) inside of a sphere and circulates close to its circumference. These modes are sensitive to the adsorption of (bio-) molecules onto the resonator surface upon which the WGM spectrum is shifted towards higher wavelengths. Compared to single particles, clusters of microresonators offer the advantage of being more easily detected due to then-higher radiative emission power. Further, the lineshape of the spectra obtained from clusters depends crucially on their composition and therefore may be used as a fingerprint for their identification, e.g., for sensing applications in array formats. Our results demonstrate that clusters of microresonators show the same sensitivity and performance as single spheres. The adsorption of layers of polyelectrolytes and bovine serum albumin (BSA) onto clusters of spheres with 10 μm diameter has been monitored in situ. Depending on the choice of materials, we achieved a mass sensitivity limit of 50 fg, which is about 100 times more sensitive than that of state-of-the-art WGM biosensors.
机译:我们基于在球面微谐振器的簇中的耳语廊道模式(WGM)激发基础上为光学生物传感器提供了一种新颖的概念。 WGM是当光被球体内的全内反射(TIR)捕获时出现的特定光学模式,并且靠近其圆周循环。这些模式对(生物)分子的吸附敏感到谐振器表面上,在其上,WGM光谱朝向更高波长偏移。与单个颗粒相比,微小器集群提供了由于当时更高的辐射发射功率而更容易检测到的优点。此外,从簇中获得的光谱的线φ大致依赖于它们的组合物,因此可以用作其识别的指纹,例如,用于以阵列格式感测应用程序。我们的结果表明,微生物簇显示出与单个球体相同的敏感性和性能。在原位监测了聚电解质层和牛血清白蛋白(BSA)层的吸附到具有10μm直径的球体中。根据材料的选择,我们达到了50fg的质量敏感性限制,比最先进的WGM生物传感器的敏感性约100倍。

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