Magnetic Properties of the Cylindrical Ising Nanowire: A Monte Carlo Simulation Study
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The Core
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A cylindrical ferrimagnetic magnetic nanowire system of core and shell layers has been investigated using Monte Carlo simulation. Critical temperature is obtained for different values of exchange couplings at the core–shell interface, at shell–shell and core–core. The total magnetization has been the determinate for different values of crystal field. Hysteresis loop, coercive field and remanent magnetization of a core and shell layers are obtained using the Monte Carlo simulation. A number of characteristic behaviors are found, such as the occurrence of single and triple hysteresis loops for appropriate values of crystal field, temperatures values and exchange interaction values.
2009 ◽
Vol 321
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pp. 1077-1083
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2015 ◽
Vol 90
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pp. 819-824
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2014 ◽
Vol 89
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pp. 699-702
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2013 ◽
Vol 339
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pp. 127-132
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2015 ◽
Vol 28
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pp. 3379-3386
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2018 ◽
Vol 113
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pp. 178-193
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2004 ◽
Vol 1
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pp. 3760-3763
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2019 ◽
Vol 471
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pp. 365-369
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2006 ◽
Vol 372
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pp. 247-250
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