کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
1785738 | 1023392 | 2015 | 4 صفحه PDF | دانلود رایگان |
![عکس صفحه اول مقاله: Crystallization characteristics of a middle CoFeB layer in a double MgO barrier magnetic tunnel junction Crystallization characteristics of a middle CoFeB layer in a double MgO barrier magnetic tunnel junction](/preview/png/1785738.png)
• The crystallization characteristics of a middle CoFeB free layer with double MgO barriers were investigated by tunneling magnetoresistance (TMR) measurements.
• The observed resistance showed three types of TMR curves depending on the crystallization of the middle CoFeB layer.
• Coherent crystallization of the middle CoFeB layer with the top and bottom MgO barriers was found to occur non-uniformly.
• This non-uniform crystallization of the middle CoFeB layer in a double MTJ was also clearly observed in tunneling electron microscopy images.
The crystallization characteristics of a middle CoFeB free layer in a magnetic tunnel junction (MTJ) with double MgO barriers were investigated by tunneling magnetoresistance (TMR) measurements of patterned cells across an 8-inch wafer. The MTJ structure was designed to have two CoFeB free layers and one bottom pinned layer, separated by MgO tunnel barriers. The observed resistance showed three types of TMR curves depending on the crystallization of the middle CoFeB layer. From the analysis of TMR curves, coherent crystallization of the middle CoFeB layer with the top and bottom MgO barriers was found to occur non-uniformly: About 80% of the MTJ cells in the wafer exhibited coherent crystallization of the middle CoFeB layers with the bottom MgO tunnel barrier, while others had coherent crystallization with the top MgO tunnel barrier or both barriers. This non-uniform crystallization of the middle CoFeB layer in a double MTJ was also clearly observed in tunneling electron microscopy images. Thus, control of the crystallization of the middle CoFeB layer is important for optimizing the MTJ with double MgO barriers, and especially for the fabrication of double barrier MTJ on a large area substrate.
Journal: Current Applied Physics - Volume 15, Issue 1, January 2015, Pages 38–41