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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Current-driven vortex oscillations in metallic nanocontacts: zero-field oscillations and training effects
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Current-driven vortex oscillations in metallic nanocontacts: zero-field oscillations and training effects

机译:金属纳米触点中电流驱动的涡旋振荡:零场振荡和训练效应

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摘要

We present an experimental and theoretical study of the low-field dynamics of current-driven vortex oscillations in nanocontacts based on spin-valve multilayers. These oscillations appear as low-frequency (250-500 MHz) excitations in the electrical power spectrum which arise from variations in the giant magnetoresistance. We show that the vortex oscillations, once nucleated at large fields applied perpendicular to the film plane, persist at zero applied magnetic fields. Some training effects on the oscillation frequency and linewidth are also observed for small in-plane magnetic fields.
机译:我们提出了基于自旋阀多层纳米接触中电流驱动涡流振荡的低场动力学的实验和理论研究。这些振荡表现为电力频谱中的低频(250-500 MHz)激发,这是由巨磁阻的变化引起的。我们显示,一旦在垂直于薄膜平面施加的大磁场中成核,涡旋振荡就会在零施加磁场下持续存在。对于小的面内磁场,还观察到了对振荡频率和线宽的一些训练效果。

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