Title :
Current-Perpendicular-to-Plane Giant Magnetoresistance in Pseudo Spin Valves With
Heusler Alloy Ferromagnetic
Author :
Li, Sinan ; Goripati, H.S. ; Takahashi, Yukiko K. ; Furubayashi, T. ; Hono, Kazuhiro
Author_Institution :
Nat. Inst. for Mater. Sci., Tsukuba, Japan
Abstract :
We studied the transport properties and micro-structure of current-perpendicular-to-plane pseudo spin valves (PSVs) with ferromagnetic Co2Fe(Ge0.5Ga0.5)(CFGG) Heusler alloy layers and a Cu or Ag spacer. The CFGG/Cu/CFGG PSVs showed an optimum annealing temperature at 300°C which is substantially lower than 500 for CFGG/Ag/CFGG PSVs. The Valet-Fert analysis yielded comparable interfacial spin asymmetries in CFGG/Cu (or Ag)/CFGG PSVs, which indicates that the Cu spacer has as good a band matching as that of the Ag spacer with the CFGG Heusler alloy. However, transmission electron microscopy observation revealed that the CFGG/Cu/CFGG tri-layered structure is thermally unstable compared to the CFGG/Ag/CFGG tri-layered structure, thus placing a limit on the annealing temperature for producing higher magnetoresistance output by using the Cu spacer.
Keywords :
cobalt alloys; ferromagnetic materials; gallium alloys; germanium alloys; iron alloys; magnetic annealing; magnetic multilayers; magnetic tunnelling; magnetoresistance; spin valves; transmission electron microscopy; Ag; Ag spacer; CFGG-Ag-CFGG tri-layered structure; CFGG-Cu-CFGG PSV; CFGG-Cu-CFGG trilayered structure; Co2Fe(Ge0.5Ga0.5); Co2Fe(Ge0.5Ga0.5) Heusler alloy ferromagnetic layers; Cu; Cu spacer; Valet-Fert analysis; band matching; current-perpendicular-to-plane giant magnetoresistance; current-perpendicular-to-plane pseudo spin valves; ferromagnetic Co2Fe(Ge0.5Ga0.5) Heusler alloy layers; interfacial spin asymmetries; microstructure; optimum annealing temperature; temperature 300 degC; temperature 500 degC; transmission electron microscopy; transport properties; Annealing; Frequency modulation; Giant magnetoresistance; Magnetic recording; Metals; Scattering; Temperature measurement; CPP-GMR; Heusler alloy; magnetic read head;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2251611