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Magneto-impedance in Co35Fe65/Cu/Co35Fe65 single and Bi-layer thin films

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Date

2020

Author

Yüzüak, Gizem Durak
Yüzüak, Ercüment
Nevruzoğlu, Vagif

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Yüzüak, G.D., Yüzüak, E. & Nevruzoğlu, V. (2020). Magneto-Impedance in Co35Fe65/Cu/Co35Fe65 Single and Bi-layer Thin Films. Electronic Materials Letters, 16(5), 473-480. https://doi.org/10.1007/s13391-020-00237-w

Abstract

The magneto-impedance response in Co35Fe65/Cu/Co35Fe65 thin film magneto-impedance cells deposited by the thermal evaporation method has been studied with single and bilayer structures at the substrate temperature 300 K and 150 K. While the thin film deposited at 300 K has BCC structure, the amorphous character is dominant for 150 K deposited ones. Entire films show soft magnetic behavior with high saturation magnetization (M-S) and low coercive field (H-C). Bilayer thin film structure reveals higher magneto-impedance values than single-layer thin films. the relation between the magneto-impedance effect and layered structure is discussed in terms of structural growing mechanism and scattering effect. the highest magneto-impedance sensitivity (eta) 37%/Oe is observed for the Co35Fe65/Cu/Co35Fe65 bilayer thin film. the H-C and remanence ratio (M-R/M-S) values for single layer at 300 K, single and bilayer cells at 150 K are measured as 51, 158 and 253 Oe-0.48, 0.78, and 0.80, respectively. When eta with the Soliton wave model is compared with the sample at room temperature, an increase of over 1700% is observed. the difference between the classical growing method at 300 K and the Soliton wave model at 150 K is the evidence of the logic of the work performed and its accuracy. the relatively high sensitivity is connected with interlayer usage and low temperature-smaller particle size in Soliton model growth. the observed findings are of practical importance to develop future technological magnetic sensor applications with high sensitivity. Graphic

Source

Electronic Materials Letters

Volume

16

Issue

5

URI

https://doi.org/10.1007/s13391-020-00237-w
https://hdl.handle.net/11436/1060

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  • Enerji Sistemleri Mühendisliği Bölümü Koleksiyonu [117]
  • Scopus İndeksli Yayınlar Koleksiyonu [5931]
  • WoS İndeksli Yayınlar Koleksiyonu [5260]



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