2021
DOI: 10.1007/s10909-021-02592-w
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Electronic, Magnetic Properties and Magnetocaloric Effect of La2SrMn2O7 Bilayer Manganite: An Ab Initio calculations and Monte Carlo Study

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Cited by 3 publications
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“…Furthermore, Monte Carlo simulations have been employed to investigate the magnetocaloric effect of SnMn 3 N, which refers to its ability to undergo temperature changes in response to varying magnetic fields. The results from these simulations have provided insights into the maximum magnetic entropy change (∆S max ) and cooling power, revealing the potential of SnMn 3 N for magnetocaloric applications [19][20][21]. Experimental efforts have focused on the synthesis and characterization of SnMn 3 N to validate theoretical findings and explore its physical properties.…”
Section:  Introductionmentioning
confidence: 95%
“…Furthermore, Monte Carlo simulations have been employed to investigate the magnetocaloric effect of SnMn 3 N, which refers to its ability to undergo temperature changes in response to varying magnetic fields. The results from these simulations have provided insights into the maximum magnetic entropy change (∆S max ) and cooling power, revealing the potential of SnMn 3 N for magnetocaloric applications [19][20][21]. Experimental efforts have focused on the synthesis and characterization of SnMn 3 N to validate theoretical findings and explore its physical properties.…”
Section:  Introductionmentioning
confidence: 95%