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Current induced vortices in multi-nanocontact spin-torque devices

机译:多纳内外旋转扭矩装置的电流诱导涡流

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We demonstrate spin transfer torque (STT) switching in multi-nanocontact STT devices fabricated using hole mask colloidal lithography. We also study the STT device resistance and switching properties as a function of applied magnetic field and nanocontact current. At low nanocontact current, magnetoresistance measurements show sharp, single-step switching at low switching fields. When the current is increased, the switching becomes multistep, and the switching field increases dramatically. We explain these results as arising from a transition from a predominantly single domain like switching to switching involving a vortex state. Micromagnetic simulations corroborate this picture, indicating that a single magnetic vortex nucleates in between the nanocontacts through the influence from the total Oersted field generated by the nanocontact ensemble.
机译:我们展示了使用孔掩模胶合光刻制造的多纳米接触STT器件中的旋转传递扭矩(STT)切换。我们还研究STT器件电阻和切换性能作为应用磁场和纳米接触电流的函数。在低纳米接触电流下,磁阻测量显示在低开关字段中锐利,单步开关。当电流增加时,切换变为多步,交换场急剧增加。我们将这些结果解释为从主要单个域的转换,如切换到涉及涡流状态的切换。微磁性模拟证实了这张照片,表明通过纳米接触集合产生的总奥斯特田的影响,单一磁性涡流核心在纳米接触中。

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