DocumentCode :
40799
Title :
Thin Spin-torque Oscillator With High AC-Field for High Density Microwave-Assisted Magnetic Recording
Author :
Sato, Yuuki ; Sugiura, Komei ; Igarashi, M. ; Watanabe, K. ; Shiroishi, Yoshihiro
Author_Institution :
Central Res. Lab., Hitachi, Odawara, Japan
Volume :
49
Issue :
7
fYear :
2013
fDate :
Jul-13
Firstpage :
3632
Lastpage :
3635
Abstract :
A spin-torque oscillator (STO) with perpendicularly magnetized reference layer and a field generating layer (FGL) with high saturation moment was compared with an STO having a perpendicular anisotropy layer (PL) on the FGL using micro-magnetic simulation. The STO without PL was more suitable for obtaining areal-density over 5 Tb/in2 from the viewpoint of achieving a high ac magnetic field and thin stack thickness required for an MAMR head. The FGL stayed in-plane against a strong trailing gap field, and stable high-frequency oscillation was achieved over 10 kOe of perpendicular external field. Magneto-resistance measurement with high applied current was carried out in order to distinguish the stable oscillation with large FGL oscillation trajectories. Qualitative correspondence between the simulation and the experimental results indicated that stable oscillation with large FGL oscillation trajectories was realized in the structure without PL.
Keywords :
AC machines; disc drives; hard discs; magnetic heads; magnetoresistance; micromagnetics; oscillators; perpendicular magnetic anisotropy; perpendicular magnetic recording; FGL oscillation trajectories; MAMR head; areal-density; field generating layer; high ac magnetic field; high density microwave-assisted magnetic recording; high-frequency oscillation; magnetoresistance measurement; micromagnetic simulation; perpendicular anisotropy layer; perpendicular external field; perpendicularly magnetized reference layer; saturation moment; stable oscillation; thin spin-torque oscillator; thin stack thickness; trailing gap field; Magnetic heads; Mathematical model; Oscillators; Perpendicular magnetic recording; Resistance; Trajectory; Field generation layer (FGL); microwave-assisted magnetic recording (MAMR); spin-torque oscillator (STO);
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2239270
Filename :
6559154
Link To Document :
بازگشت