基于fret的纳米级通信中广播网络和信道路由的信息理论分析

M. Kuscu, Derya Malak, Ö. Akan
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引用次数: 11

摘要

基于Förster共振能量转移(FRET)的纳米级通信使纳米机器能够利用荧光分子的激发态作为信息传送带进行相互通信。在本研究中,进一步扩展了基于fret的纳米级通信,实现了一个发射端和多个接收端纳米机的基于fret的纳米级广播通信,并从理论上分析了广播信道的性能。此外,利用量子点的量子受限斯塔克效应(QCSE),提出了一种可控路由机制。结果表明,通过适当地选择通信纳米机器上所使用的分子,可以在基于fret的纳米网络中通过外部施加电场来控制信息流的路径。
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An information theoretical analysis of broadcast networks and channel routing for FRET-based nanoscale communications
Nanoscale communication based on Förster Resonance Energy Transfer (FRET) enables nanomachines to communicate with each other using the excited state of the fluorescent molecules as the information conveyer. In this study, FRET-based nanoscale communication is further extended to realize FRET-based nanoscale broadcast communication with one transmitter and many receiver nanomachines, and the performance of the broadcast channel is analyzed information theoretically. Furthermore, an electrically controllable routing mechanism is proposed exploiting the Quantum Confined Stark Effect (QCSE) observed in quantum dots. It is shown that by appropriately selecting the employed molecules on the communicating nanomachines, it is possible to control the route of the information flow by externally applying electric field in FRET-based nanonetworks.
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