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Biomedical and chemical sensing with nanobeam photonic crystal cavities using optical bistability

机译:利用光学双稳态利用纳米束光子晶体腔进行生物医学和化学传感

摘要

A miniature optical biosensor and biosensor array where high sensitivity for detection of biomolecular interaction does not require a fluorescent label. Non-linear frequency-shifts of optical resonators (‘nanobeams’) provide a digital all-or-nothing response to equilibrium binding of a biomarker to surface-immobilized bio-recognition elements, a signal suitable to identify active components in genetic and proteomic circuits, as well as toxic substances. The threshold level for the digital response is adjustable to accommodate for varying receptor affinities. A bistable cavity sensing (BCS) method can be used to track the shift of the resonance induced by the analyte more precisely than the conventional cavity sensing method, where the resolution is limited by the cavity linewidth. BCS method can be used to quantitate the concentration of the analyte, and their binding kinetics, affinities and etc.
机译:微型光学生物传感器和生物传感器阵列,其中用于检测生物分子相互作用的高灵敏度不需要荧光标记。光学谐振器('nanobeams')的非线性频移提供了对生物标志物与表面固定生物识别元件的平衡结合的数字全有或全无响应,该信号适合于识别遗传和蛋白质组学电路中的活性成分以及有毒物质。数字响应的阈值水平可调,以适应变化的受体亲和力。与传统的腔传感方法相比,双稳态腔传感(BCS)方法可用于更精确地跟踪分析物引起的共振的位移,而传统的腔传感方法的分辨率受腔线宽限制。 BCS方法可用于定量分析物的浓度及其结合动力学,亲和力等。

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