DocumentCode :
1498389
Title :
Feasibility of Differential Dual Spin Valve for 10 {\\rm Tb/\\in}^{2}
Author :
Han, G.C. ; Wang, L. ; Qiu, J.J. ; Ko, V. ; Wang, C.C.
Author_Institution :
Data Storage Inst., A*STAR (Agency for Sci., Technol. & Res.), Singapore, Singapore
Volume :
46
Issue :
6
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1432
Lastpage :
1435
Abstract :
A conventional read head with the sensor embedded between two magnetic shields would hit the wall to provide a resolution required for a bit length less than 10 nm. A differential dual spin valve (DDSV) is proposed as an alternative for recording density of 10 Tb/in2. Our simulation results show that a DDSV can work well for a bit length down to 4 nm without magnetic shields. An excellent differential effect for a DDSV was achieved under a uniform field. Two resistance transitions are observed due to the inconsistent switching of free layers of the two spin valves. The inconsistent switching results from the interlayer coupling and its effect on DDSV performances can be eliminated by applying a vertical bias field. Signal to noise ratio (SNR) of a DDSV reader is analyzed mainly based on the mag-noise. We show that the mag-noise may not be a crucial limiting factor of SNR, because of the relative high available field at 10 Tb/in2 and thicker free layer in the DDSV reader. The specifications of the DDSV reader for 10 Tb/in2 are also derived. Our results demonstrate that the DDSV reader is very promising for 10 Tb/in2 applications.
Keywords :
magnetic recording; magnetic shielding; magnetic switching; spin valves; conventional read head; differential dual spin valve; differential effect; inconsistent switching; interlayer coupling; magnetic recording; magnetic shields; resistance transitions; sensor; signal-to-noise ratio; Damping; Differential equations; Finite element methods; Magnetic heads; Saturation magnetization; Sensor systems; Signal processing; Spin valves; Switches; 10 ${rm Tb/in}^{2}$; Differential dual spin valve; magnetic recording;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2010.2041042
Filename :
5467449
Link To Document :
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