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Readable High-Speed Racetrack Memory Based on an Antiferromagnetically Coupled Soft/Hard Magnetic Bilayer

机译:基于反铁磁耦合的软/硬磁双层的可读高速赛道记忆

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摘要

The current-induced domain wall (DW) motion in a racetrack memory with a synthetic antiferromagnets (SAFs) structure has attracted attention because of the ultrahigh velocity of the DW. However, since there is little stray field due to the zero net magnetization in a pair of antiferromagnetically (AFM) coupled domains, how to read the information stored in the pair of domains is still challenging. In the present work, we propose a readable SAF racetrack memory composed of two ferromagnetic (FM) layers with distinct uniaxial-anisotropy constants. As a result, a region of staggered domains formed between two neighboring DWs in the two layers. In this region, there is a parallel alignment of the moments in the two FM layers. This parallel magnetization is readable and can be exploited to label the structure of the nearby AFM-coupled domains for the racetrack with DWs moving in a fixed direction. This function can be realized by connecting a Schmitt Trigger to a sensor for reading. The stability and the length of the staggered region can be well-tuned by changing the magnetic parameters, such as the interlayer exchange coupling constants, the Dzyaloshinskii–Moriya interaction (DMI) constants, and the uniaxial-anisotropy constants of the two FM layers, in a range that is experimentally achievable.
机译:具有合成反铁磁体(SAF)结构的赛道记忆中的电流感应畴壁(DW)运动由于DW的超高速度而引起了人们的关注。但是,由于在一对反铁磁(AFM)耦合域中归因于零净磁化,因此几乎没有杂散场,因此如何读取存储在该对域中的信息仍然具有挑战性。在当前的工作中,我们提出了一个由两个铁磁(FM)层组成的具有不同单轴各向异性常数的可读SAF跑道存储器。结果,在两层中的两个相邻DW之间形成了交错域的区域。在该区域中,两个FM层中的矩平行对齐。这种平行磁化是可读的,可以利用DW沿固定方向移动来标记赛道附近AFM耦合域的结构。通过将施密特触发器连接到传感器进行读取,可以实现此功能。可以通过更改磁参数(例如层间交换耦合常数,Dzyaloshinskii-Moriya相互作用(DMI)常数以及两个FM层的单轴各向异性常数)来很好地调整交错区域的稳定性和长度,在实验上可达到的范围内。

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