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Nano Communication Device with an Embedded Molecular Film: Electromagnetic Signals Integration with Dynamic Operation Photodetector

机译:具有嵌入式分子膜的纳米通信设备:电磁信号与动态操作光电探测器的集成

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摘要

Nano-devices with embedded molecular films appear as promising nano communications tools. In general, processing in such hybrid nano-device consists of initial energy of both activated electronic and atomic subsystems of an embedded molecular species, followed by intra- and inter-molecular nanoscale signals generation and reception of the transmitted signal at remote site. Actually, electromagnetic radiation can establish wireless nano communication in Visible, Infrared, and Microwave frequency ranges. In this manuscript, we estimate some properties of a microelectronics receiver in such systems, presented by novel dynamic operation pin photodetector, possesses signal integration, and required for receiving and demodulation of an electromagnetic wave. Revealed both theoretical and experimental characteristics of a photodetector have allowed designing dynamic process scenarios, as well as its possible applications inside a nano network.
机译:具有嵌入式分子膜的纳米设备似乎是有前途的纳米通讯工具。通常,在这种混合纳米装置中的处理包括嵌入式分子物种的激活电子子系统和原子子系统的初始能量,然后是分子内和分子间纳米级信号的产生以及在远程站点的发射信号的接收。实际上,电磁辐射可以在可见,红外和微波频率范围内建立无线纳米通信。在此手稿中,我们估计了此类系统中微电子接收器的一些特性,这些特性由新颖的动态操作引脚光电检测器呈现,具有信号集成以及接收和解调电磁波所需。揭示了光电探测器的理论和实验特性,允许设计动态过程方案及其在纳米网络内部的可能应用。

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