2016
DOI: 10.21272/jnep.8(2).02056
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Structure and Magnetoresistive Properties of Thee-layer Film Systems Based on Permalloy and Copper

Abstract: Structural and phase composition and magnetoresistive properties of three-layer film systems based on permalloy and copper are investigated. The samples are obtained by the method of layer by layer condensation followed by heat treatment in the 300-700 K temperature range. It is shown that the spin-dependent electron scattering is realized in the layer thickness range of dCu 6-15 nm and dPy 25-40 nm for as-deposited and annealed at 400 K samples. It is established that the maximum isotropic magnetoresistance i… Show more

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Cited by 10 publications
(2 citation statements)
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“…To date, a large number of experimental results of the study of magnetic and magnetoresistive properties of multilayers and multilayer film systems based on permalloy (Py) and Cu [17][18][19][20]. Py and Cu-based film systems are widely used due to certain unique features  low values of coercivity and saturation magnetization [1], thermal stability [19,20], high sensitivity to the magnetic field [18].…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…To date, a large number of experimental results of the study of magnetic and magnetoresistive properties of multilayers and multilayer film systems based on permalloy (Py) and Cu [17][18][19][20]. Py and Cu-based film systems are widely used due to certain unique features  low values of coercivity and saturation magnetization [1], thermal stability [19,20], high sensitivity to the magnetic field [18].…”
Section: Introductionmentioning
confidence: 99%
“…To date, a large number of experimental results of the study of magnetic and magnetoresistive properties of multilayers and multilayer film systems based on permalloy (Py) and Cu [17][18][19][20]. Py and Cu-based film systems are widely used due to certain unique features  low values of coercivity and saturation magnetization [1], thermal stability [19,20], high sensitivity to the magnetic field [18]. Due to these properties, magnetic film systems have found practical application in biomedical technologies in the manufacture of biosensors [1], in automobile electronics [1], in spintronics in the manufacture of sensitive elements of magnetic field sensors [2], magnetic transducers, magnetoresistive random access memory [21].…”
Section: Introductionmentioning
confidence: 99%