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首页> 外文期刊>Physics of the solid state >Spin-flip conductance and magnetoresistance of magnetic nanocontacts
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Spin-flip conductance and magnetoresistance of magnetic nanocontacts

机译:磁性纳米触点的自旋翻转电导和磁阻

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摘要

The quantized conductance of nanocontacts with atomic sizes is calculated with allowance made for the conduction-electron spin flip in terms of the quantum scattering theory. The exact solution of the Schrodinger equation describing the electron motion in a piecewise-smooth potential is used as the zeroth-order approximation of the perturbation theory. The probabilities of electron transmission (reflection) through a magnetic domain wall, as well as the spin-conserving and spin-flip conductances of the nanocontact, are calculated. It is demonstrated that the spin-flip conductance imposes the natural limitation on the formally infinite increase in the ballistic magnetoresistance of the nanocontact when its cross-sectional area tends to zero.
机译:根据量子散射理论,在考虑了导电电子自旋翻转的情况下,计算了具有原子尺寸的纳米接触的量化电导。描述电子在分段平滑电势中运动的薛定inger方程的精确解被用作微扰理论的零阶近似。计算了通过磁畴壁的电子传输(反射)的概率,以及纳米接触的自旋守恒和自旋翻转电导。已经证明,自旋翻转电导在其横截面积趋于零时对纳米接触的弹道磁阻形式上的无限增大施加了自然的限制。

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