×

Magnetic properties of mixed spin-5/2 and spin-2 Ising model on a decorated square lattice: a Monte Carlo simulation. (English) Zbl 1514.82052

Summary: The magnetic properties of mixed spin-5/2 and spin-2 Ising model on a decorated square lattice are studied using the Monte Carlo simulations. The ground state phase diagrams of mixed spin-5/2 and spin-2 Ising model on a decorated square lattice are obtained. The reduced transition temperature is obtained for different values of exchange interactions between mixed spins-5/2 and 2. The effect of reduced crystal field on the system are studied. The magnetic hysteresis cycles of the mixed spin-5/2 and spin-2 Ising model on a decorated square lattice for a several values of exchange interactions and reduced crystal field values have been found. Finally, th 94A17e system exhibit the superparamagnetism behavior for \(d=-4\) and for this value the total magnetization is equal to zero.

MSC:

82B20 Lattice systems (Ising, dimer, Potts, etc.) and systems on graphs arising in equilibrium statistical mechanics
81V10 Electromagnetic interaction; quantum electrodynamics
Full Text: DOI

References:

[1] Temizer, Umut; Keskin, Mustafa; Canko, Osman, J. Magn. Magn. Mater., 321, 2999 (2009)
[2] Jaščur, M.; Štubňa, V.; Szałowski, K.; Balcerzak, T., J. Magn. Magn. Mater., 417, 92-99 (2016)
[3] Ekiz, Cesur, Physica A, 387, 1185-1199 (2008)
[4] Elmers, H. J., Int. J. Modern Phys. B, 9, 3115 (1995)
[5] Muñoz-Navia, M.; Dorantes-Dávila, J.; Zitoun, D.; Amiens, C.; Chaudret, B.; Casanove, MJ.; Lecante, P.; Jaouen, N.; Rogalev, A.; Respaud, M.; Pastor, GM., Faraday Discuss., 138, 181 (2008)
[6] K. Katsumata, 31-34, 1983, 1435.
[7] Brehmer, S.; Mikeska, H.-J.; MXuller, M., Phys. Rev. B, 60, 329 (1999)
[8] Matsuda, M.; Katsumata, K., Phys. Rev. B, 62, 8903 (2000)
[9] Matsuda, M.; Katsumata, K.; Eccleston, R. S.; Brehmer, S.; Mikeska, H.-J., J. Appl. Phys., 87, 6271 (2000)
[10] Drillon, M.; Coronado, E.; Georges, R.; Gianduzzo, J. C., J. Curely. Phys. Rev. B, 40, 10992 (1989)
[11] van Koningsbruggen, P. J.; Kahn, O.; Nakatani, N.; Pei, Y.; Renard, J. R.; Drillon, M.; Legoll, P., Inorg. Chem., 29, 3325 (1990)
[12] Kaneyoshi, T., J. Magn. Magn. Mater., 336, 8-13 (2013)
[13] Bhattacharjee, A., J. Mater. Sci. Lett., 15, 102 (1996)
[14] Bhattacharjee, A.; Feyerherm, R.; Steiner, M., J. Phys. Soc. Japan, 68, 1679 (1999)
[15] Nuttall, C. J.; Day, P., Chem. Mater., 10, 3050 (1998)
[16] Clemente-León, M.; Coronado, E.; Galán-Mascarós, J.; Gómez-García, C. J., Chem. Commun., 18, 1727 (1997)
[17] Wang, Wei; Lv, Dan; Zhang, Fan; Bi, Jiang-lin; Chen, Jun-nan, J. Magn. Magn. Mater., 385, 16-26 (2015)
[18] Masrour, R.; Jabar, A.; Benyoussef, A.; Hamedoun, M., J. Magn. Magn. Mater., 410, 223-225 (2016)
[19] Ohkoshi, S.; Hashimoto, K., Phys. Rev. B, 60, 12820 (1999)
[20] De La Espriella, N.; Mercado, C. A.; Madera, J. C., J. Magn. Magn. Mater., 401, 22 (2016)
[21] Jiang, Wei; Wang, Ya-Ning, J. Magn. Magn. Mater., 426, 785-793 (2017)
[22] Wang, Jiu-Ming; Jiang, Wei; Zhou, Chen-Long; Shi, Zuo; Wu, Chuang, Superlattices Microstruct., 102, 359-372 (2017)
[23] Jiang n, Wei; Wang, Zan; Guo, An-Bang; Wang, Kai; Wang, Ya-Ning, Physica E, 73, 250-256 (2015)
[24] Jiang, Wei; Yang, Ying-Ying; Guo, An-Bang, Carbon, 95, 190-198 (2015)
[25] Jiang, Wei; Wang, Ya-Ning; Guo, An-Bang; Yang, Ying-Ying; Shi, Kai-Le, Carbon, 110, 41-47 (2016)
[26] Jiang n, Wei; Huang, Jian-Qi, Physica E, 78, 115-122 (2016)
[27] Metropolis, N.; Rosenbluth, A. W.; Rosenbluth, M. N.; Teller, A. H.; Teller, E., J. Chem. Phys., 21, 1087 (1953) · Zbl 1431.65006
[28] Newman, M. E.J.; Barkema, G. T., Monte Carlo Methods in Statistical Physics (1999), Oxford University Press: Oxford University Press Oxford · Zbl 1012.82019
[29] De La Espriella, N.; Buendía, G. M., Phys. A, 389, 2725 (2010)
[30] Deviren, S. A., Solid State Commun., 251, 73-78 (2017)
[31] Mercado, C. A.; De LaEspriella, N.; L. C.Sánchez, J. Magn. Magn. Mater., 382, 288-295 (2015)
[32] Aydiner, E.; Yüksel, Y.; Kis-Cam, E.; Polat, H., J. Magn. Magn. Mater., 321, 3193 (2009)
[33] DeLaEspriella, N.; Mercado, C. A.; Madera, J. C., J. Magn. Magn. Mater., 401, 22-29 (2016)
[34] Peng, D. L.; Sumiyama, K.; Yamamuro, S.; Hihara, T.; Konno, T. J., Phys. Status Solidi (a), 172, 209 (1999)
[35] Jiang, W.; Wei, G. Z.; Xin, Z. H., Physica A, 293, 455-464 (2001) · Zbl 0978.82101
[36] Szabo, G.; Kadar, G., Phys. Rev. B, 58, 5584 (1998)
[37] Masrour, R.; Jabar, A., Chin. Phys. B, 25, 107502 (2016)
[38] Jabar, A.; Masrour, R.; Benyoussef, A.; Hamedoun, M., J. Magn. Magn. Mater., 397, 287 (2016)
[39] Mounkachi, O.; El Moussaoui, H.; Masrour, R.; Ilali, J.; Mediouri, K. EL.; Hamedoun, M.; Hlil, E. K.; ElKenz, A.; Benyoussef, A., Mater. Lett., 126, 193-196 (2014)
[40] Jiang, Wei; Li, Xiao-Xi; Liu, Li-Mei; Chen, Jun-Nan; Zhang, Fan, J. Magn. Magn. Mater., 353, 90-98 (2014)
[41] Masrour, R.; Jabar, A.; Benyoussef, A.; Hamedoun, M., Physica A, 491, 1028-1039 (2018) · Zbl 1514.82058
This reference list is based on information provided by the publisher or from digital mathematics libraries. Its items are heuristically matched to zbMATH identifiers and may contain data conversion errors. In some cases that data have been complemented/enhanced by data from zbMATH Open. This attempts to reflect the references listed in the original paper as accurately as possible without claiming completeness or a perfect matching.