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A multilevel nonvolatile magnetoelectric memory

机译:多级非易失性磁电存储器

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摘要

The coexistence and coupling between magnetization and electric polarization in multiferroic materials provide extra degrees of freedom for creating next-generation memory devices. A variety of concepts of multiferroic or magnetoelectric memories have been proposed and explored in the past decade. Here we propose a new principle to realize a multilevel nonvolatile memory based on the multiple states of the magnetoelectric coefficient (α) of multiferroics. Because the states of α depends on the relative orientation between magnetization and polarization, one can reach different levels of α by controlling the ratio of up and down ferroelectric domains with external electric fields. Our experiments in a device made of the PMN-PT/Terfenol-D multiferroic heterostructure confirm that the states of α can be well controlled between positive and negative by applying selective electric fields. Consequently, two-level, four-level, and eight-level nonvolatile memory devices are demonstrated at room temperature. This kind of multilevel magnetoelectric memory retains all the advantages of ferroelectric random access memory but overcomes the drawback of destructive reading of polarization. In contrast, the reading of α is nondestructive and highly efficient in a parallel way, with an independent reading coil shared by all the memory cells.
机译:多铁性材料中磁化和极化之间的共存和耦合为创建下一代存储设备提供了额外的自由度。在过去的十年中,已经提出并探索了多种多铁性或磁电存储器的概念。在此,我们提出了一种基于多铁磁磁系数(α)的多个状态来实现多级非易失性存储器的新原理。由于α的状态取决于磁化和极化之间的相对取向,因此可以通过控制外部铁电场的上下铁电畴的比率来达到不同的α水平。我们在由PMN-PT / Terfenol-D多铁异质结构制成的设备中进行的实验证实,通过施加选择性电场,可以在正负之间很好地控制α的状态。因此,在室温下证明了两级,四级和八级非易失性存储器件。这种多级磁电存储器保留了铁电随机存取存储器的所有优点,但克服了破坏性极化读取的缺点。相反,α的读取是无损的,并且以并行的方式是高效的,所有存储单元共享一个独立的读取线圈。

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