论文标题

部分可观测时空混沌系统的无模型预测

Free-space optomechanical liquid probes using a twin-microbottle resonator

论文作者

Asano, Motoki, Yamaguchi, Hiroshi, Okamoto, Hajime

论文摘要

腔光力学提供了高性能传感器技术,该方案也适用于生物学和流变物应用的液体样品。但是,先前报道的使用流体毛细管通道和液滴的方法基于固定设计结构,因此不允许对样品进行主动自由空间方法。在这里,我们使用带有Twin-Microbottle谐振器的基于探针的体系结构演示了另一种技术。该探针由两个微伯特的光学谐振器组成,其中一个瓶子(用于检测)浸入液体中,另一个瓶子(用于读取)放在空中,该瓶子通过高光学Q(〜107)保留了出色的检测性能。该方案允许检测检测瓶的热机械运动及其光力机械侧带驱动器。该技术可能会导致在任意培养基的目标位置的原位计量学,并且可以扩展到超敏感的生物芯片和流变仪。

Cavity optomechanics provides high-performance sensor technology, and the scheme is also applicable to liquid samples for biological and rheological applications. However, previously reported methods using fluidic capillary channels and liquid droplets are based on fixed-by-design structures and therefore do not allow an active free-space approach to the samples. Here, we demonstrate an alternate technique using a probe-based architecture with a twin-microbottle resonator. The probe consists of two microbottle optomechanical resonators, where one bottle (for detection) is immersed in liquid and the other bottle (for readout) is placed in air, which retains excellent detection performance through the high optical-Q (~107) of the readout bottle. The scheme allows the detection of thermomechanical motion of the detection bottle as well as its optomechanical sideband drive. This technique could lead to in-situ metrology at the target location in arbitrary media, and could be extended to ultrasensitive biochips and rheometers.

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