Miao G X, Park Y J, Moodera J S, Seibt M, Eilers G, Münzenberg M
Francis Bitter Magnet Laboratory, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Phys Rev Lett. 2008 Jun 20;100(24):246803. doi: 10.1103/PhysRevLett.100.246803. Epub 2008 Jun 19.
Oxygen vacancies in the MgO barriers of epitaxial Fe/MgO/Fe magnetic tunnel junctions are observed to introduce symmetry-breaking scatterings and hence open up channels for noncoherent tunneling processes that follow the normal WKB approximation. The evanescent waves inside the MgO barrier thus experience two-step tunneling, the coherent followed by the noncoherent process, and lead to lower tunnel magnetoresistance, higher junction resistance, as well as increased bias and temperature dependence. The characteristic length of the symmetry scattering process is determined to be about 1.6 nm.
在外延Fe/MgO/Fe磁性隧道结的MgO势垒中观察到氧空位会引入对称性破缺散射,从而为遵循正常WKB近似的非相干隧穿过程开辟通道。因此,MgO势垒内的倏逝波经历两步隧穿,先是相干过程,然后是非相干过程,导致较低的隧道磁电阻、较高的结电阻,以及增加的偏置和温度依赖性。对称性散射过程的特征长度确定为约1.6纳米。