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Switching Behavior of Vortex Cores in Bilayer Nanodots by Uniform Magnetic Field Pulses

机译:均匀磁场脉冲在双层纳米点中涡旋核的转换行为

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摘要

We investigate the response of magnetic vortex cores in bilayer dots, a vertical stack of disk and square sublayers, to ultrashort in-plane magnetic field pulses by micromagnetic simulations. The bilayer dots adopt the advantage of switching behaviors of constituent dots; the low switching field threshold of the square is still maintained and the operating switching field range is intermediate, compared to the single-layer disk and square. Besides the usual creation and subsequent annihilation of vortex-antivortex pair reported previously, subsequent antivortex or vortex and antivortex pair during the vortex core switching process can be observed in the bilayer dot with a lateral size of about 100 nm.
机译:我们通过微磁模拟研究了双层点,磁盘和正方形子层的垂直堆栈中的双层磁点中的磁涡流核对超短平面磁场脉冲的响应。双层点具有构成点的切换行为的优点。与单层磁盘和正方形相比,正方形的低开关场阈值仍保持不变,并且工作开关场范围处于中间。除了先前报道的涡旋-反涡旋对的通常创建和随后的hil灭之外,在涡旋核心转换过程中,随后的反涡旋或涡旋和反涡旋对也可以在双层点中观察到,其横向尺寸约为100 nm。

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