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Common-path interferometric detection of protein monolayer on the BioCD

机译:BioCD上蛋白质单层的共径干涉检测

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摘要

The bio-optical compact disk (BioCD) is an optical biosensor that performs common-path molecular inter-ferometry of patterned proteins on a disk spinning at high speed. The common-path configuration makes it ultrastable and allows surface height precision below 10 pm. In this paper we show that two complementary interferometric quadrature conditions exist simultaneously that convert the modulus and phase of the reflection coefficient, modulated by protein patterns on the disk surface, into intensity modulation at the detector. In the far field they separate into spatially symmetric and antisymmetric intensity modulation in response to the local distribution of protein. The antisymmetric response is equivalent to differential phase-contrast detection, and the symmetric response is equivalent to in-line (ID common-path interferom-etry. We measure the relative sensitivities of these orthogonal channels to printed protein patterns on disk structures that include thermal oxide on silicon and Bragg dielectric stacks. The scaling mass sensitivity of the IL channel on oxide on silicon was measured to be 0.17 pg/mm.
机译:生物光学光盘(BioCD)是一种光学生物传感器,可对高速旋转的磁盘上的图案化蛋白质进行共通分子干涉测量。公共路径配置使其超稳定,并允许表面高度精度低于10 pm。在本文中,我们显示了两个互补的干涉式正交条件同时存在,它们将由磁盘表面上的蛋白质图案调制的反射系数的模量和相位转换为检测器处的​​强度调制。在远场中,响应于蛋白质的局部分布,它们分为空间对称和反对称强度调节。抗对称响应等效于差分相衬检测,对称响应等效于在线(ID共路径干扰)。我们测量了这些正交通道对磁盘结构(包括热)上印刷的蛋白质模式的相对敏感性。在硅上的氧化物和Bragg介电叠层上形成氧化硅,在硅上的氧化物上的IL沟道的定标质量灵敏度为0.17 pg / mm。

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