2019
DOI: 10.1103/physrevmaterials.3.044403
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Converse magnetoelectric effects in composites of liquid phase epitaxy grown nickel zinc ferrite films and lead zirconate titanate: Studies on the influence of ferrite film parameters

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Cited by 11 publications
(4 citation statements)
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“…In 445–465 nm thick NFO films on ZGO, CGO and MAO, in-plane FMR measurements yielded easy plane type H a values of 0.1 kOe, 0.5 kOe and 2.6 kOe, respectively. We recently carried out studies on 2–30 m thick LPE grown Ni 0.85 Zn 0.15 Fe 2 O 4 ( NZFO) films on (111) and (100) MGO substrates 31 . An induced in-plane anisotropy field in the films was evident from the magnetization and FMR measurements.…”
Section: Discussionmentioning
confidence: 99%
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“…In 445–465 nm thick NFO films on ZGO, CGO and MAO, in-plane FMR measurements yielded easy plane type H a values of 0.1 kOe, 0.5 kOe and 2.6 kOe, respectively. We recently carried out studies on 2–30 m thick LPE grown Ni 0.85 Zn 0.15 Fe 2 O 4 ( NZFO) films on (111) and (100) MGO substrates 31 . An induced in-plane anisotropy field in the films was evident from the magnetization and FMR measurements.…”
Section: Discussionmentioning
confidence: 99%
“…It is however possible to achieve a significant modification of magnetic parameters in thin films. A variety of techniques were used in the past to synthesize films of NFO, including electrodeposition 22 , chemical vapor deposition 23 , microwave-assisted solvothermal process 24 , pulsed laser deposition (PLD) 25 29 , and liquid phase epitaxy (LPE) 30 , 31 . The objective in most of the past studies was to take advantage of strain due to film-substrate lattice mismatch to achieve a large growth induced anisotropy field.…”
Section: Introductionmentioning
confidence: 99%
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“…В основе данного явления лежит взаимодействие электрической и магнитной упорядоченных подсистем через механическую связь: возникающие в образце механические деформации посредством внешнего воздействия на одну из подсистем (электрическую либо магнитную) приводят к соответствующему отклику в другой подсистеме. Воздействие магнитной подсистемы на электрическую условились называть прямым МЭ-эффектом [4], если же изменяется магнитное состояние во внешнем электрическом поле -то это обратный эффект [5]. Наиболее отчетливо МЭ-эффект наблюдается в слоистых композиционных структурах, в которых обе упорядоченные подсистемы пространственно отделены друг от друга.…”
Section: Introductionunclassified