Abstract

The dielectric properties and the hysteresis electric cycles of a monolayer stanene-like nanostructure are studied using Monte Carlo simulations. The considered system consists of mixed spins S= ±1 and σ= ±7/2 with an ferrielectric intermediate exchange coupling. We start by analyzing the ground state phase diagrams for (T = 0). In this case, only 18 configurations are stable among 8 × 3 = 24 possible ones. Besides, for T > 0, we investigate the behavior of the blocking temperature for different electric parameters. We discuss the polarization plateaus of the hysteresis electric cycles of this nanostructure by exploring the critical (EC), the coercive (ECoer), and the saturation (ES) electric fields.

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