Development and Analysis of a Potential Nanosensor Communication Network Using Carbon Nanotubes
Brian E. Usibe, Alexander I. Menkiti, Michael U. Onuu, Julie C. Ogbulezie
Abstract
Brian E. Usibe, Alexander I. Menkiti, Michael U. Onuu, Julie C. Ogbulezie
Abstract
Nanosensor Technology and Electro magnetic Co mmunications among Nanosensors using the Terahertz (THz) frequency band were examined. An algorith m to show how a Nanosensor node detects a signal was developed using an interpolating network 27.0.0.1 model. In addit ion, a Nanosensor PC Simulator was designed using JCreator LE Setup, to demonstrate the working process of a Wireless Nanosensor Co mmunication Network in a sensor field. The findings show that with the introduction of Graphene-based Nanoantennas and Electro magnetic Nanotransceivers, using Carbon Nanotubes (CNTs), nanosensor devices can communicate among themselves in the THz frequency (0.1 - 10) THz.
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Nanosensor Technology and Electro magnetic Co mmunications among Nanosensors using the Terahertz (THz) frequency band were examined. An algorith m to show how a Nanosensor node detects a signal was developed using an interpolating network 27.0.0.1 model. In addit ion, a Nanosensor PC Simulator was designed using JCreator LE Setup, to demonstrate the working process of a Wireless Nanosensor Co mmunication Network in a sensor field. The findings show that with the introduction of Graphene-based Nanoantennas and Electro magnetic Nanotransceivers, using Carbon Nanotubes (CNTs), nanosensor devices can communicate among themselves in the THz frequency (0.1 - 10) THz.
Key concepts: Nanosensor, Terahertz radiation, Carbon nanotube, Materials science, Nanotechnology, Graphene, Node (physics), Optoelectronics