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Magnetic droplet nucleation boundary in orthogonal spin-torque nano-oscillators

Authors :
Chung, Sunjae
Eklund, Anders
Iacocca, Ezio
Mohseni, Seyed Majid
Redjai Sani, Sohrab
Bookman, Lake
Hoefer, Mark A.
Dumas, Randy K.
Åkerman, Johan
Chung, Sunjae
Eklund, Anders
Iacocca, Ezio
Mohseni, Seyed Majid
Redjai Sani, Sohrab
Bookman, Lake
Hoefer, Mark A.
Dumas, Randy K.
Åkerman, Johan
Publication Year :
2016

Abstract

Static and dynamic magnetic solitons play a critical role in applied nanomagnetism. Magnetic droplets, a type of non-topological dissipative soliton, can be nucleated and sustained in nanocontact spin-torque oscillators with perpendicular magnetic anisotropy free layers. Here, we perform a detailed experimental determination of the full droplet nucleation boundary in the current-field plane for a wide range of nanocontact sizes and demonstrate its excellent agreement with an analytical expression originating from a stability analysis. Our results reconcile recent contradicting reports of the field dependence of the droplet nucleation. Furthermore, our analytical model both highlights the relation between the fixed layer material and the droplet nucleation current magnitude, and provides an accurate method to experimentally determine the spin transfer torque asymmetry of each device.<br />QC 20160513

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1234230641
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1038.ncomms11209