4.6 Article

Strain-mediated magnetoelectric storage, transmission, and processing: Putting the squeeze on data

期刊

MRS BULLETIN
卷 43, 期 11, 页码 848-853

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1557/mrs.2018.260

关键词

magnetic; ferroelectric; piezoelectric; nanoscale; memory

资金

  1. NSF Nanosystems Engineering Research Center for Translational Applications of Nanoscale Multiferroic Systems Cooperative Agreement Award [EEC-1160504]
  2. DARPA AMEBA Program: A Mechanically Based Antenna [HR0011-17-C-0117]
  3. University Center of Excellence: High-Rate Deformation Physics of Heterogeneous Materials (BAA-AFOSR 2011-16)
  4. Shanghai Pujiang Program [18PJ1408300]
  5. Taiwan Ministry of Science and Technology [105-2628-E-009-001-MY2]

向作者/读者索取更多资源

Strain-mediated magnetoelectric coupling provides a powerful method for controlling nanoscale magnetism with an electric voltage. This article reviews the initial use of macroscale composites and subsequent experimental control of magnetic thin films, nanoscale heterostructures, and single domains. The discussion highlights several characteristics enabling small, fast, and energy-efficient technologies. The second section covers applications where strain-mediated magnetoelectricity has been used, with emphasis on the storage, transmission, and processing of information (i.e., memory, antenna, and logic devices). These advances are order-of-magnitude improvements over conventional technologies, and open up exciting new possibilities.

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