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Exploring Electrically Controlled Magnons for Post-Moore Microelectronics with Exascale Modeling

ORAL

Abstract

The post-Moore's law era has seen unprecedented growth of electronic microdevices harnessing novel physical couplings beyond conventional single-phase materials. To gain an in-depth understanding of the interaction between the physical mechanisms, we are exploring the validation, design and optimization of magnetoelectric spin-orbit logics. Using the GPU-accelerated software package we have developed (https://github.com/AMReX-Microelectronics), we are studying the manipulation of chiral-spin transport with ferroelectric polarization, which allows control of magnons by external electric fields. With the capability to explore full physical interactions, this new approach provides a pathway to understand and develop new fully integrated electronic systems beyond the capability of traditional semiconductor technologies.

Presenters

  • Zhi Yao

    Lawrence Berkeley National Laboratory

Authors

  • Zhi Yao

    Lawrence Berkeley National Laboratory

  • Prabhat Kumar

    Lawrence Berkeley National Laboratory

  • Andy J Nonaka

    Lawrence Berkeley National Laboratory

  • Revathi Jambunathan

    Lawrence Berkeley National Laboratory

  • Xianzhe Chen

    UC Berkeley

  • Xiaoxi Huang

    University of California, Berkeley

  • Ramamoorthy Ramesh

    Rice University