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A novel optical waveguide microcantilever sensor for the detection of nanomechanical forces

机译:用于检测纳米机械力的新型光波导微悬臂梁传感器

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摘要

This study presents a novel generic multipurpose probe based on an array of 20 waveguide channels with microcantilevers acting as optical waveguides operated in the visible range. The principle of operation is based on the sensitivity of energy transfer between two butt-coupled waveguides to their misalignment with respect to each other. The technique can be considered an alternative to the known methods used for the readout of the nanomechanical response of microcantilevers to the external force exerted on them. The cantilever displacement can be detected with a resolution of 18 fm//spl radic/Hz. The limit is generally defined by the shot noise of a conventional photodetector used for the readout of the output signal. Real-time parallel monitoring of several channels can be realized. In contrast to devices based on the atomic force microscope detection principle, no preliminary alignment or adjustment, except for light coupling, is required. The detection of the cantilever deflection at subnanometer range was demonstrated experimentally.
机译:这项研究提出了一种新颖的通用探针,该探针基于20个波导通道的阵列,其中微悬臂用作在可见范围内工作的光波导。工作原理是基于两个对接波导之间的能量传递对其相对于彼此未对准的敏感性。可以认为该技术是用于读出微悬臂梁对施加在其上的外力的纳米机械响应的已知方法的替代。悬臂位移可以以18 fm // spl radic / Hz的分辨率进行检测。该限制通常由用于输出信号读出的常规光电检测器的散粒噪声定义。可以实现多个通道的实时并行监控。与基于原子力显微镜检测原理的设备相比,除了光耦合之外,不需要任何初步的对齐或调整。实验证明了在亚纳米范围内检测悬臂挠度。

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