Detection of the metal–insulator transition in disordered systems of magnetic nanoislands

We have studied the conductivity and permittivity of a series of nanoisland-type FeNi films with an effective thickness of up to 3.2 nm on different substrates. It has been observed that the quantity Re ε changes its sign at effective thickness d * ≈ 1.5–1.8 nm, because of the metal–insulator transi...

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Veröffentlicht in:Journal of experimental and theoretical physics 2017-09, Vol.125 (3), p.465-468
Hauptverfasser: Boltaev, A. P., Pudonin, F. A., Sherstnev, I. A., Egorov, D. A.
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Sprache:eng
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Zusammenfassung:We have studied the conductivity and permittivity of a series of nanoisland-type FeNi films with an effective thickness of up to 3.2 nm on different substrates. It has been observed that the quantity Re ε changes its sign at effective thickness d * ≈ 1.5–1.8 nm, because of the metal–insulator transition. Analysis of the temperature dependences of the conductivity has confirmed the existence of the metal–insulator transition at the same thickness d * . It has been concluded that the introduced effective permittivity can serve as a characteristic of island metal systems.
ISSN:1063-7761
1090-6509
DOI:10.1134/S1063776117080027