A multi-state magnetic memory dependent on the permeability of Metglas

作者:Petrie J R*; Wieland K A; Timmerwilke J M; Barron S C; Burke R A; Newburgh G A; Burnette J E; Fischer G A; Edelstein A S
来源:Applied Physics Letters, 2015, 106(14): 142403.
DOI:10.1063/1.4917247

摘要

A three-state magnetic memory was developed based on differences in the magnetic permeability of a soft ferromagnetic media, Metglas 2826MB (Fe40Ni38Mo4B18). By heating bits of a 250 nm thick Metglas film with 70-100 mW of laser power, we were able to tune the local microstructure, and hence, the permeability. Ternary memory states were created by using lower laser power to enhance the initial permeability through localized atomic rearrangement and higher power to reduce the permeability through crystallization. The permeability of the bits was read by detecting variations in an external 32 Oe probe field within 10 mu m of the media via a magnetic tunnel junction read head. Compared to data based on remanent magnetization, these multi-permeability bits have enhanced insensitivity to unexpected field and temperature changes. We found that data was not corrupted after exposure to fields of 1 T or temperatures of 423 K, indicating the effectiveness of this multi-state approach for safely storing large amounts of data.

  • 出版日期2015-4-6