Parallel data processing with Magnonic Holographic Co-Processor

M. Balynsky, D. Gutierrez, H. Chiang, A. Khitun, A. Kozhevnikov, Y. Khivintsev, G. Dudko, Y. Filimonov
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引用次数: 1

Abstract

In this work, we present experimental data demonstrating the capabilities of Magnonic Holographic Co-Processor for parallel data processing. It is a type of magnetic logic device, which utilizes spin waves for data transfer and processing. Its operation is based on the correlation between the phases and the amplitudes of the input spin waves and the output inductive voltages. We present experimental data obtained for 8-terminal prototype based on Y3Fe2(FeO4)3 structure. The input of the device is provided by the phased array of spin wave generating elements allowing us to produce input phase patterns of an arbitrary form. The obtained data demonstrate the capabilities of Magnonic Holographic Co-Processor for parallel data processing by using spin wave superposition. Potentially, magnonic holographic devices can be implemented as complementary logic units to digital processors. Physical limitations and technological constrains are also discussed.
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磁振子全息协处理器并行数据处理
在这项工作中,我们提出了实验数据,证明了磁振子全息协处理器并行数据处理的能力。它是一种利用自旋波进行数据传输和处理的磁逻辑器件。它的工作原理是基于输入自旋波的相位和振幅与输出感应电压之间的相关性。本文给出了基于Y3Fe2(FeO4)3结构的8端原型的实验数据。该装置的输入由自旋波产生元件的相控阵提供,使我们能够产生任意形式的输入相位模式。所得数据证明了磁振子全息协处理器利用自旋波叠加进行并行数据处理的能力。潜在地,磁振全息器件可以作为数字处理器的补充逻辑单元来实现。还讨论了物理限制和技术限制。
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