DocumentCode
1075545
Title
70% TMR at room temperature for SDT sandwich junctions with CoFeB as free and reference Layers
Author
Wang, Dexin ; Nordman, Cathy ; Daughton, James M. ; Qian, Zhenghong ; Fink, Jonathon
Author_Institution
NVE Corp., Eden Prairie, MN, USA
Volume
40
Issue
4
fYear
2004
fDate
7/1/2004 12:00:00 AM
Firstpage
2269
Lastpage
2271
Abstract
Spin dependent tunneling (SDT) wafers were deposited using dc magnetron sputtering. SDT junctions were patterned and connected with one layer of metal lines using photolithography techniques. These junctions have a typical stack structure of Si(100)-Si3N4-Ru-CoFeB-Al2O3-CoFeB-Ru-FeCo-CrMnPt with the antiferromagnet CrMnPt layers for pinning at the top. High-resolution transmission electron microscopy (HRTEM) reveals that the CoFeB has an amorphous structure and a smooth interface with the Al2O3 tunnel barrier. Although it is difficult to pin the amorphous CoFeB directly from the top, the use of a synthetic antiferromagnet (SAF) pinned layer structure allows sufficient rigidity of the reference CoFeB layer. The tunnel junctions were annealed at 250°C for 1 h and tested for magneto-transport properties with tunnel magnetoresistive (TMR) values as high as 70.4% at room temperature, which is the highest value ever reported for such a sandwich structure. This TMR value translates to a spin polarization of 51% for CoFeB, which is likely to be higher at lower temperatures. These junctions also have a low coercivity (Hc) and a low parallel coupling field (Hcoupl). The combination of a high TMR, a low Hc, and a low Hcoupl is ideal for magnetic field sensor applications.
Keywords
amorphous magnetic materials; magnetic multilayers; magnetic sensors; nanotechnology; photolithography; spin polarised transport; sputtering; tunnelling magnetoresistance; 1 h; 250 C; Al2O3; CoFeB; CrMnPt; FeCo; Ru; SDT sandwich junctions; SDT wafers; Si3N4; amorphous structure; antiferromagnet layers; dc magnetron sputtering; high resolution transmission electron microscopy; magnetic field sensor applications; magnetotransport properties; metal lines; nanomagnetics; nanotechnology; photolithography techniques; pinned layer structure; room temperature; sandwich structure; smooth interface; spin dependent tunneling; spin polarization; stack structure; synthetic antiferromagnet; tunnel barrier; tunnel junctions; tunnel magnetoresistive; Amorphous magnetic materials; Amorphous materials; Annealing; Antiferromagnetic materials; Lithography; Magnetic sensors; Sputtering; Temperature; Transmission electron microscopy; Tunneling magnetoresistance; Amorphous CoFeB; MTJ; SDT; magnetic sensor; magnetoresistance; nanomagnetics; nanotechnology; spin-dependent tunneling;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2004.830219
Filename
1325474
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