Reentrant Phenomenon and Tunable Magnetic Transitions in Monolayer Graphyne-like Nanostructures: A Monte Carlo Study

The magnetic properties of the monolayer graphyne-like nanostructures (MGLN) with mixed spins (S=1 and σ=7/2) are investigated by Monte Carlo simulation within the Blume-Capel model. The performed Monte Carlo simulations have produced some interesting features displaying the reentrant phenomenon. A detailed analysis of the system reveals the complex nature of its phase transitions with significant tunability in magnetism. Notably, a first-order to second-order magnetic transition crossover governed by T or H has been found in the system. These findings will be useful for understanding controllable magnetic responses in MGLN and for further spintronic and technological applications.

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Publication Details

Journal
International Journal of Modern Physics B
Published
2026-09-28
DOI
https://doi.org/10.1142/s0217979226502905
Primary Topic
Graphene research and applications
Type
article
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Reentrant Phenomenon and Tunable Magnetic Transitions in Monolayer Graphyne-like Nanostructures: A Monte Carlo Study

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Reentrant Phenomenon and Tunable Magnetic Transitions in Monolayer Graphyne-like Nanostructures: A Monte Carlo Study

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article en

Abstract

The magnetic properties of the monolayer graphyne-like nanostructures (MGLN) with mixed spins (S=1 and σ=7/2) are investigated by Monte Carlo simulation within the Blume-Capel model. The performed Monte Carlo simulations have produced some interesting features displaying the reentrant phenomenon. A detailed analysis of the system reveals the complex nature of its phase transitions with significant tunability in magnetism. Notably, a first-order to second-order magnetic transition crossover governed by T or H has been found in the system. These findings will be useful for understanding controllable magnetic responses in MGLN and for further spintronic and technological applications.

International Journal of Modern Physics B
Openalex Percentile: Top 26%
Graphene research and applications
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