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Sub-nanosecond spin-torque switching of perpendicular magnetic tunnel junction nanopillars at cryogenic temperatures

机译:低温温度下垂直磁隧道结纳米粒子的亚纳秒旋转扭矩切换

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摘要

Spin-transfer magnetic random access memory devices are of significant interest for cryogenic computing systems where a persistent, fast, low-energy consuming, and nanometer scale device operating at low temperature is needed. Here, we report the low-temperature nanosecond duration spin-transfer switching characteristics of perpendicular magnetic tunnel junction (pMTJ) nanopillar devices (40-60 nm in diameter) and contrast them to their room temperature properties. Interestingly, the characteristic switching time decreases with temperature, with the largest reduction occurring between room temperature and 150 K. The switching energy increases with decreasing temperature, but still compares very favorably with other types of spin-transfer devices at 4 K, with 300 fJ required per switch. Write error rate (WER) measurements show highly reliable switching with WER = 5 x 10(-5) with 4 ns pulses at 4 K. Our results demonstrate the promise of pMTJ devices for cryogenic applications and show routes to further device optimization.
机译:旋转传输磁随机存取存储器件对于低温计算系统对于低温操作的持久性,快速,低能耗和纳米级装置来说是显着的兴趣。在这里,我们报告了垂直磁隧道结(PMTJ)纳米粒子装置(直径40-60nm)的低温纳秒持续时间旋转转换特性,并将其对比其室温性质。有趣的是,特性切换时间随温度降低,室温和150 k之间的最大值发生。开关能量随着温度的降低而增加,但仍然非常有利地与4 k处的其他类型的自旋转移装置相比,具有<300每条交换机都需要FJ。写入错误率(WER)测量显示使用4k的WER <= 5 x 10(-5)的高度可靠的切换,4 k。我们的结果证明了PMTJ器件用于低温应用的承诺,并显示进一步设备优化的路由。

著录项

  • 来源
    《Applied Physics Letters》 |2019年第18期|182404.1-182404.5|共5页
  • 作者单位

    NYU Dept Phys Ctr Quantum Phenomena New York NY 10003 USA;

    Spin Memory Inc Fremont CA 94538 USA;

    Spin Memory Inc Fremont CA 94538 USA;

    Spin Memory Inc Fremont CA 94538 USA;

    NYU Dept Phys Ctr Quantum Phenomena New York NY 10003 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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