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Spin-transfer torque switched magnetic tunnel junctions in magnetic random access memory

机译:磁性随机存取存储器中的自旋转移转矩切换磁性隧道结

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Spin-transfer torque (or spin-torque, or STT) based magnetic tunnel junction (MTJ) is at the heart of a new generation of magnetism-based solid-state memory, the so-called spin-transfer-torque magnetic random access memory, or STT-MRAM. Over the past decades, STT-based switchable magnetic tunnel junction has seen progress on many fronts, including the discovery of (001) MgO as the most favored tunnel barrier, which together with (bcc) Fe or FeCo alloy are yielding best demonstrated tunnel magneto-resistance (TMR); the development of perpendicularly magnetized ultrathin CoFeB-type of thin films sufficient to support high density memories with junction sizes demonstrated down to llnm in diameter; and record-low spin-torque switching threshold current, giving best reported switching efficiency over 5 k_BT/μA. Here we review the basic device properties focusing on the perpendicularly magnetized MTJs, both in terms of switching efficiency as measured by sub-threshold, quasi-static methods, and of switching speed at super-threshold, forced switching. We focus on device behaviors important for memory applications that are rooted in fundamental device physics, which highlights the trade-off of device parameters for best suitable system integration.
机译:基于自旋转移转矩(或自旋转矩或STT)的磁隧道结(MTJ)是新一代基于磁性的固态存储器的核心,所谓的自旋移转矩磁随机存取存储器,或STT-MRAM。在过去的几十年中,基于STT的可转换磁性隧道结在许多方面都取得了进展,包括发现(001)MgO是最受青睐的隧道势垒,它与(bcc)Fe或FeCo合金一起产生了最佳的隧道磁感应强度。电阻(TMR);垂直磁化的超薄CoFeB型薄膜的发展足以支持高密度存储器,其结尺寸已证明可减小至直径11nm。以及创纪录的低自旋转矩开关阈值电流,在5 k_BT /μA的范围内提供了最佳的开关效率。在这里,我们回顾了集中在垂直磁化MTJ上的基本器件特性,包括通过亚阈值,准静态方法测量的开关效率以及在超阈值,强制开关时的开关速度。我们专注于对于基于基础设备物理原理的内存应用程序而言重要的设备行为,该行为突出了为实现最合适的系统集成而需要对设备参数进行的权衡。

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