Open AccessPhysicsEngineeringComputer Science

J. Puebla, Junyeon Kim, K. Kondou, Y. Otani

2020.5.7Communications Materials

DOI: 10.1038/s43246-020-0022-5

tlooto Summary

An overview of the current status of research and technology developments in data storage and spin-mediated energy harvesting in relation to energy-efficient technologies and perspective on the advantages and outstanding issues for various data-storage concepts, and energy conversion mechanisms enabled by spin are given.

Abstract

The current data revolution has, in part, been enabled by decades of research into magnetism and spin phenomena. For example, milestones such as the observation of giant magnetoresistance, and the resulting development of the spin-valve read head, continue to motivate device research. However, the ever-growing need for higher data processing speeds and larger data storage capabilities has caused a significant increase in energy consumption and environmental concerns. Ongoing research and development in spintronics should therefore reduce energy consumption while increasing information processing capabilities. Here, we provide an overview of the current status of research and technology developments in data storage and spin-mediated energy harvesting in relation to energy-efficient technologies. We give our perspective on the advantages and outstanding issues for various data-storage concepts, and energy conversion mechanisms enabled by spin. The current surge in data generation necessitates devices that can store and analyze data in an energy efficient way. This Review summarizes and discusses developments on the use of spintronic devices for energy-efficient data storage and logic applications, and energy harvesting based on spin.

Citation format

PUEBLA, J., et al. Spintronic devices for energy-efficient data storage and energy harvesting. Communications Materials, 2020, 1.