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Protein-based optical transducer for mechatronic devices

机译:基于蛋白质的机电装置的光学传感器

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An optical transducer based on the light modulated transmission properties of bacteriorhodopsin (bR) film is described in this paper. The bR protein molecules undergo a complex photocycle when absorbing light energy that is characterized by several measurable states. The most relevant states in the photocycle for this application are the initial B state (λ_(max) = 570 nm) and the longest lived M intermediate state (λ_(max) = 410 nm). If a yellow light source with a wavelength of approximately 570 nm and a second deep blue source at 410 nm illuminate the same region of the thin bR film, the two beams will mutually suppress the optical transmission properties of the thin film and reduce the intensity of the light output. The suppression-modulated transmission mechanism of the bR polymeric film is, therefore, controlled by the intensity and wavelength of the two light sources. Based on this simple mechanism, a number of different protein-based optical devices have been proposed in the literature for optical signal and information processing. The focus of this research is to exploit the light transmission properties of the bR film to develop efficient optical transducers that can be easily interfaced with micro-electro-mechanical systems (MEMs) for mechatronic applications. The proposed transducer design is activated by an external light source and free from electrical noise. Illustrations of how thin bR film can be used for the modulation of light intensity, optical switches, and logic gates are presented.
机译:本文描述了一种基于Bacteriorhopopsin(Br)膜的光调制透射性能的光学传感器。当吸收特征的光能时,Br蛋白分子经历复杂的光循环。用于该应用的光周期中最相关的状态是初始B状态(λ_(max)= 570nm)和最长的寿命的m中间状态(λ_(max)= 410nm)。如果波长为约570nm的黄色光源和410nm的第二深蓝色源照亮薄br膜的相同区域,则两个光束将相互抑制薄膜的光传输性能并降低强度光输出。因此,Br聚合物膜的抑制调制传动机构由两个光源的强度和波长控制。基于这种简单的机制,在文献中提出了许多不同的基于蛋白质的光学装置,用于光学信号和信息处理。该研究的重点是利用BR膜的透光性能,以开发有效的光学传感器,该换能器可以容易地与微机电系统(MEMS)界面,用于机电调整应用。所提出的换能器设计由外部光源激活并没有电噪声。呈现薄BR膜的图示呈现出光强度,光开关和逻辑门的调制。

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