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Magnetic Properties and Compensation Temperature Behaviors in the Hexacene-like Nanostructure: A Monte Carlo Study

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Abstract

In this work, we study the ground state phase diagrams and the magnetic properties of the mixed spins (S-1, σ-7/2) of the Hexacene-like nanostructure. In the first step, the ground state phase diagrams have been established to show the more stable configurations corresponding to different physical parameters. Besides, the Monte Carlo simulations are used to investigate the effects of the temperature, the exchange coupling interactions, the crystal field, and the external magnetic field on the magnetization. Moreover, the hysteresis cycle behaviors have been investigated. It is found that the studied system exhibits two compensation temperatures (Tcomp1; Tcomp2) which depend on the exchange coupling parameters and the external magnetic field.

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Correspondence to N. Saber.

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Hereby, I “Noureddine Saber” consciously assure that for the manuscript ”Magnetic Properties and Compensation Temperature Behaviors in the Hexacene-Like Nanostructure: A Monte Carlo Study” the following is fulfilled: 1) This material is the authors' own original work, which has not been previously published elsewhere. 2) The paper is not currently being considered for publication elsewhere. 3) The paper reflects the authors' own research and analysis in a truthful and complete manner. 4) The paper properly credits the meaningful contributions of co-authors and co-researchers. 5) The results are appropriately placed in the context of prior and existing research. 6) All sources used are properly disclosed by using proper references. 7) All authors have been personally and actively involved in substantial work. I agree with the above statements and declare that this submission follows the policies of Your Journal.

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Saber, N., Fadil, Z., Mhirech, A. et al. Magnetic Properties and Compensation Temperature Behaviors in the Hexacene-like Nanostructure: A Monte Carlo Study. J Low Temp Phys 210, 310–324 (2023). https://doi.org/10.1007/s10909-022-02861-2

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