TY - JOUR
T1 - Effect of the interplay between layering sequence permutations and thickness on the magnetic features of Fe/Ni/Gd hetero-films
AU - Mokkath, Junais Habeeb
N1 - Publisher Copyright:
© the Owner Societies 2020.
PY - 2020/6/7
Y1 - 2020/6/7
N2 - The effect of the interplay between layering sequence permutations and film thickness on the temperature-dependent magnetization and spin structure of Fe/Ni/Gd hetero-films (sizes: 10 nm × 10 nm ×dnm and 20 nm × 20 nm ×dnm, wheredis the film thickness and with all possible layer sequence permutations) is investigated in the framework of an atomistic spin dynamics formalism. As the main conclusion of our work, ford= 2 and 4 nm, layering sequence permutations do not affect the evolution of the mean temperature-dependent magnetization of hetero-films. Nonetheless, dramatic magnetic modulations appear ford= 6 nm. More specifically, a Gd film sandwiched between Fe and Ni films (FeGdNi hetero-film) exhibits a depressed mean temperature-dependent magnetization in the temperature range of 150 K to 700 K. In contrast, both FeNiGd and NiFeGd hetero-films show a more or less similar magnetization evolution.
AB - The effect of the interplay between layering sequence permutations and film thickness on the temperature-dependent magnetization and spin structure of Fe/Ni/Gd hetero-films (sizes: 10 nm × 10 nm ×dnm and 20 nm × 20 nm ×dnm, wheredis the film thickness and with all possible layer sequence permutations) is investigated in the framework of an atomistic spin dynamics formalism. As the main conclusion of our work, ford= 2 and 4 nm, layering sequence permutations do not affect the evolution of the mean temperature-dependent magnetization of hetero-films. Nonetheless, dramatic magnetic modulations appear ford= 6 nm. More specifically, a Gd film sandwiched between Fe and Ni films (FeGdNi hetero-film) exhibits a depressed mean temperature-dependent magnetization in the temperature range of 150 K to 700 K. In contrast, both FeNiGd and NiFeGd hetero-films show a more or less similar magnetization evolution.
UR - http://www.scopus.com/inward/record.url?scp=85085960844&partnerID=8YFLogxK
U2 - 10.1039/d0cp01712d
DO - 10.1039/d0cp01712d
M3 - Article
C2 - 32441727
AN - SCOPUS:85085960844
SN - 1463-9076
VL - 22
SP - 12082
EP - 12091
JO - Physical Chemistry Chemical Physics
JF - Physical Chemistry Chemical Physics
IS - 21
ER -