论文标题

基于Skyrmion隧道的可编程Skyrmion逻辑门

Programmable skyrmion logic gates based on skyrmion tunneling

论文作者

Sisodia, Naveen, Pelloux-Prayer, Johan, Buda-Prejbeanu, Liliana D., Anghel, Lorena, Gaudin, Gilles, Boulle, Olivier

论文摘要

磁性天空是有希望的候选者,作为逻辑中的基本纳米级位,本质上合并了高密度记忆和计算能力。在这里,我们利用了由离子辐照模式设计的各向异性能量屏障与设计可编程逻辑门相互作用的动力学。使用带有实验参数的微磁模拟,我们表明对屏障高度和宽度进行微调,可以选择通过Skyrmion-Skyrmion相互作用触发的平行纳米钻之间的天际隧道。可以将其利用来设计Skyrmion De-Multiplexer(DMUX)逻辑门,该逻辑门仅使用Skyrmions作为逻辑输入。通过使用特定拓扑结合级联和连接电源门,我们开发了一个完全可编程的逻辑门,能够产生任何可能的逻辑输出,作为由给定的一组输入产生的所有矿物的总和,而无需任何复杂的附加电动/磁性互换。所提出的设计是完全保守的,可覆盖,并为完整的基于Skyrmionic的逻辑设备铺平了新的途径。

Magnetic skyrmions are promising candidates as elementary nanoscale bits in logic-in-memory devices, intrinsically merging high density memory and computing capabilities. Here we exploit the dynamics of skyrmions interacting with anisotropy energy barriers patterned by ion irradiation to design programmable logic gates. Using micromagnetic simulations with experimental parameters, we show that a fine tuning of the barrier height and width allows the selective tunneling of skyrmions between parallel nanotracks triggered by skyrmion-skyrmion interaction. This can be leveraged to design skyrmion De-multiplexer (DMux) logic gate which works solely using skyrmions as logic inputs. By cascading and connecting demultiplexer gates with a specific topology, we develop a fully programmable logic gate capable of producing any possible logic output as a sum of all minterms generated by a given set of inputs without requiring any complex additional electric/magnetic interconversion. The proposed design is fully conservative and cascadable and paves a new pathway for full skyrmionic-based logic-in-memory devices.

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