Abstract

Monte Carlo simulations of the square Husimi bilayer nanolattice reveal that both blocking temperature (tB) and coercive field (ℎC) were influenced by different physical parameters. These insights are crucial for optimizing magnetic devices and managing thermal effects. The study provides valuable guidance for the design of more efficient and stable magnetic systems. Bilayer magnetic ferrimagnetic nanosystems show diverse applications in nanotechnology, leveraging their magnetic properties for significant advancements across various technological fields.

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