Energy-efficient Nanocomputing Circuit by Multiferroic Nanomagnets
- Bo Wei
, - Jia Li,
- Huanqing Cui,
- Shuqing Dou,
- Yongshun Xia,
- Chaowen Feng,
- Xiaokuo Yang
Xiaokuo Yang
Air Force Engineering University
Corresponding Author:yangxk0123@163.com
Author ProfileAbstract
Magnetoelastic switching in multiferroic nanomagnets with a small
voltage is a promising substitute for current charge-based CMOS devices.
Here, we study strain-mediated multiferroic majority logic gate by
solving Landau-Lifshitz-Gilbert equation and establish an energy-
efficient CMOS compatible equivalent circuit analogy to capacitor's I- V
characteristics. We can easily simulate nanomagnet logic units using
this tool. After that, the circuit is verified by SPICE simulations.
Results show that the output voltage polarity is determined by the
majority of input voltage polarity with ultralow energy consumption,
working similarly to majority logic function. The SPICE circuit model
shows ultralow energy consumption because of the conserved dynamic
current, which can serve as a promising logic unit, consequently,
integrated into large-scale nanomagnetic logic circuits and even a
nanomagnetic chip.25 May 2023Submitted to Micro & Nano Letters 26 May 2023Assigned to Editor
26 May 2023Submission Checks Completed
31 May 2023Reviewer(s) Assigned