Off-axis electron holography of patterned magnetic nanostructures

被引:51
作者
Dunin-Borkowski, RE
Mccartney, MR
Kardynal, B
Parkin, SSP
Scheinfein, MR
Smith, DJ
机构
[1] Arizona State Univ, Ctr Solid State Sci, Tempe, AZ 85287 USA
[2] Arizona State Univ, Ctr Solid State Elect Res, Tempe, AZ 85287 USA
[3] IBM Corp, Almaden Res Ctr, Div Res, San Jose, CA 95120 USA
[4] Arizona State Univ, Dept Phys & Astron, Tempe, AZ 85287 USA
来源
JOURNAL OF MICROSCOPY-OXFORD | 2000年 / 200卷
关键词
in situ magnetization reversal; hysteresis; lithographically patterned magnetic nanostructures; off-axis electron holography; remanent states;
D O I
10.1046/j.1365-2818.2000.00753.x
中图分类号
TH742 [显微镜];
学科分类号
摘要
Magnetization reversal processes in lithographically patterned magnetic elements that have lateral dimensions of 70-500 nm, thicknesses of 3-30 nm and a wide range of shapes and layer sequences have been followed in situ using off-axis electron holography in the transmission electron microscope. This technique allows domain structures within individual elements and the magnetic interactions between them to be quantified at close to the nanometre scale. The behaviour of 30 nm-thick Co elements was compared with that of 10 nm-thick Ni and Co elements, as well as with Co/Au/Ni trilayers. The hysteresis loops of individual elements were determined directly from the measured holographic phase images. The reproducibility of an element's domain structure in successive cycles was found to be affected by the out-of-plane component of the applied magnetic field and by the exact details of its initial magnetic state. Close proximity to adjacent elements led to strong intercell coupling, and remanent states with the in-plane magnetic field removed included domain structures such as solenoidal (vortex) states that were never observed during hysteresis cycling. Narrow rectangular bars reversed without the formation of end domains, whereas closely separated magnetic layers within individual elements were observed to couple to each other during field reversal.
引用
收藏
页码:187 / 205
页数:19
相关论文
共 22 条
[1]  
[Anonymous], 1991, Advances in optical and electron microscopy
[2]   DIRECT DETERMINATION OF MAGNETIC DOMAIN-WALL PROFILES BY DIFFERENTIAL PHASE-CONTRAST ELECTRON-MICROSCOPY [J].
CHAPMAN, JN ;
BATSON, PE ;
WADDELL, EM ;
FERRIER, RP .
ULTRAMICROSCOPY, 1978, 3 (02) :203-214
[4]   QUANTITATIVE MAPPING OF THE MAGNETIC INDUCTION DISTRIBUTION USING FOUCAULT IMAGES FORMED IN A TRANSMISSION ELECTRON-MICROSCOPE [J].
DAYKIN, AC ;
PETFORDLONG, AK .
ULTRAMICROSCOPY, 1995, 58 (3-4) :365-380
[5]   DETECTION LIMITS IN QUANTITATIVE OFF-AXIS ELECTRON HOLOGRAPHY [J].
DERUIJTER, WJ ;
WEISS, JK .
ULTRAMICROSCOPY, 1993, 50 (03) :269-283
[6]   Energy filtered magnetic induction mapping [J].
Dooley, J ;
De Graef, M .
MICRON, 1997, 28 (05) :371-380
[7]  
Dunin-Borkowski RE, 1998, RRD APPL PHYS, V1, P119
[8]   Magnetic microstructure of magnetotactic bacteria by electron holography [J].
Dunin-Borkowski, RE ;
McCartney, MR ;
Frankel, RB ;
Bazylinski, DA ;
Posfai, M ;
Buseck, PR .
SCIENCE, 1998, 282 (5395) :1868-1870
[9]   Towards quantitative electron holography of magnetic thin films using in situ magnetization reversal [J].
Dunin-Borkowski, RE ;
McCartney, MR ;
Smith, DJ ;
Parkin, SSP .
ULTRAMICROSCOPY, 1998, 74 (1-2) :61-73
[10]   Switching asymmetries in closely coupled magnetic nanostructure arrays [J].
Dunin-Borkowski, RE ;
McCartney, MR ;
Kardynal, B ;
Smith, DJ ;
Scheinfein, MR .
APPLIED PHYSICS LETTERS, 1999, 75 (17) :2641-2643