Current shunting effects in Cd3As2: A closer look at the topological-ferromagnet interface

Abstract

Topological materials, such as Cd3As2, are of great importance for next-generation computing systems where energy efficiency is paramount. For example, in spin–orbit torque magnetic access memory (SOT-MRAM), topological materials generate the spin–orbit torque necessary for magnetization switching of an adjacent magnetic layer. Current shunting at the ferromagnet–topological material interface can be detrimental for spin generation and overall SOT efficiency. Here, the current shunting effect is analyzed in permalloy- and gold-shunted Cd3As2 disk structures using angle-dependent magnetoresistance measurements. We observe Shubnikov–de Haas oscillations and weak antilocalization. Hakami–Larkin–Nagaoka and Tkachov–Hankiewicz models are used to evaluate the weak antilocalization. We confirm the effects of current shunting and discuss its detriment to the efficiency of spin-based devices.

Document Details

Document Type
Pub Defense Publication
Publication Date
May 08, 2023
Source ID
10.1063/5.0141264

Entities

People

  • Adam L. Friedman
  • Aubrey T Hanbicki
  • Binghao Guo
  • Erick C. Sadler
  • Gregory M. Stephen
  • Jennifer DeMell
  • Karen E. Grutter
  • Nicholas A. Blumenschein
  • Susanne Stemmer

Organizations

  • United States Department of Defense
  • University of California

Tags

Fields of Study

  • Physics

Readers

  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.
  • Superconducting Magnet Technology
  • Trauma Surgery or Emergency Medicine.

Technology Areas

  • Space