Fe/MgO interface engineering for high-output-voltage device applications
Fe/MgO interface engineering for high-output-voltage device applications
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DOI:
10.1063/1.2172717
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发表时间:
2006-02
影响因子:
4
通讯作者:
C. Tiușan;M. Sicot;M. Hehn;C. Belouard;S. Andrieu;F. Montaigne;A. Schuhl
中科院分区:
文献类型:
--
作者:
C. Tiușan;M. Sicot;M. Hehn;C. Belouard;S. Andrieu;F. Montaigne;A. Schuhl
The magnetotransport characteristics of Fe∕MgO∕Fe epitaxial tunnel junctions are reported. For clean Fe∕MgO interfaces, a tunnel magnetoresistance of 150% is measured. However, the magnetoresistance decreases rapidly with the applied voltage. Consequently, the main parameter to optimize for device application, namely the output voltage, remains relatively low. This limitation has been solved by interface engineering through the insertion of carbon impurities at the Fe∕MgO interface. Although the tunnel magnetoresistance amplitude is slightly reduced, its variation versus the applied voltage becomes strongly asymmetric with large magnetoresistance maintained up to 1.5V. This determines a large increase of the tunnel junction output voltage.