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A Frequency-Domain Analysis of a Time-Reversal Cavity for Electromagnetic Waves in Transmission Line Networks

2022 3RD URSI ATLANTIC AND ASIA PACIFIC RADIO SCIENCE MEETING (AT-AP-RASC)(2022)

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Abstract
Recently, a closed time-reversal cavity for electromagnetic waves was demonstrated and experimentally realized using a network of transmission lines. This paper presents an analysis in the frequency domain of the wave propagation characteristics that pertain to the time-reversal cavity. The study illustrates, in the frequency domain, that the backward-propagation wave consists of the converging and diverging components, and only the converging wave constitutes a time-reversed counterpart of the forward-propagation wave. Moreover, it is found that the interfering effect of the diverging wave can exist for any of the observation points along the transmission line network. Finally, the analysis demonstrates that an active time-reversal sink remains effective in the frequency domain to overcome the interfering effect.
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Key words
interfering effect,converging components,converging wave,diverging components,backward-propagation wave,wave propagation characteristics,transmission lines,closed time-reversal cavity,electromagnetic waves,frequency-domain analysis,frequency domain,active time-reversal sink,transmission line network,diverging wave,forward-propagation wave,time-reversed counterpart
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