The 83rd JSAP Autumn Meeting 2022

Presentation information

Oral presentation

10 Spintronics and Magnetics » 10.3 Spin devices, magnetic memories and storages

[20a-B101-1~10] 10.3 Spin devices, magnetic memories and storages

Tue. Sep 20, 2022 9:30 AM - 12:15 PM B101 (B101)

Kazuya Suzuki(Tohoku Univ.), Takafumi Nakano(Tohoku Univ.)

11:15 AM - 11:30 AM

[20a-B101-7] Giant magnetoresistance and interlayer exchange coupling in [FeCoNi/Cu] multilayers with NiFeCr seed layer

〇(P)Prabhanjan Dilip Kulkarni1, Tomoya Nakatani1, Zehao Li1, Taisuke Sasaki1, Yuya Sakuraba1 (1.NIMS)

Keywords:Giant magnetoresistance, Interlayer exchange coupling, Microstructure

We present a systematic study on the giant magnetoresistance (GMR) and interlayer exchange couplings (IEC) in polycrystalline [Fe16Co66Ni18/Cu]5/Fe16Co66Ni18 multilayer films deposited on NiFeCr seed layers with various compositions. The maximum ΔR/R of 35±2.5% and strong antiparallel IEC were observed for the seed layers with a particular Ni:Fe ratio of (Ni0.55Cr0.45)100-yFey with 0≤y≤47. Structural studies confirm that this high ΔR/R is related to a strong fcc [111] texture and coarse grains of the GMR films. We also observed that the film deposited on Ni32Fe33Cr35 seed layer showed stronger [111] texture, but lower ΔR/R (17%) than those deposited on Ni36Fe51Cr13 seed layer (ΔR/R=28%). Microstructural analysis indicated an increased arithmetic average roughness (Ra) of the interfaces between FeCoNi and Cu layers for the films with the Ni32Fe33Cr35 seed layer. We argue that this higher Ra causes a reduction in antiparallel IEC and increase a biquadratic (90°) IEC and thus reduce ΔR/R.