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CHAOS SYNCHRONIZATION BETWEEN THE JOSEPHSON JUNCTIONS GOVERNED BY THE CENTRAL JUNCTION UNDER THE

The effect of parameter mismatches and noise on chaos synchronisation between Josephson junctions powered by a central junction is investigated. It is shown that the quality of chaotic synchronisation is unaffected by parameter discrepancies of 10-15%. It is also revealed that for intermediate noise levels, the correlation between the synchronised junctions can be even improved; but, for higher noise intensities, synchronisation quality degrades. Despite the fact that all the driven junctions and the driver junction were subjected to the same quantity of noise, the synchronisation quality between some junctions remains unchanged. These findings are significant in terms of generating a high-power system of Josephson junctions in real-world conditions, and they hold promise for Terahertz applications.


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