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Focused-electron-beam-induced-deposited cobalt nanopillars for nanomagnetic logic

机译:聚焦电子束诱导沉积的钴纳米柱用于纳米磁逻辑

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摘要

Nanomagnetic logic (NML) intends to alleviate problems of continued miniaturization of CMOS-based electronics, such as energy dissipation through heat, through advantages such as low power operation and non-volatile magnetic elements. In line with recent breakthroughs in NML with perpendicularly magnetized elements formed from thin films, we have fabricated NML inverter chains from Co nanopillars by focused electron beam induced deposition (FEBID) that exhibit shape-induced perpendicular magnetization. The flexibility of FEBID allows optimization of NML structures. Simulations reveal that the choice of nanopillar dimensions is critical to obtain the correct antiferromagnetically coupled configuration. Experiments carrying the array through a clocking cycle using the Oersted field from an integrated Cu wire show that the array responds to the clocking cycle.
机译:纳米磁逻辑(NML)旨在通过诸如低功耗操作和非易失性磁性元件等优点来缓解基于CMOS的电子产品持续小型化的问题,例如通过热量的能量耗散。与NML的最新进展相一致,NML由薄膜制成的垂直磁化元件,我们通过聚焦电子束诱导沉积(FEBID)由Co纳米柱制造了NML逆变器链,该电子束表现出形状诱导的垂直磁化强度。 FEBID的灵活性允许优化NML结构。仿真表明,纳米柱尺寸的选择对于获得正确的反铁磁耦合构型至关重要。使用集成铜线的Oersted磁场在整个时钟周期内传送阵列的实验表明,该阵列对时钟周期有响应。

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