IP Library Granted Patent US 9,005,781
Granted Patent B2
US 9,005,781 · App. 13/620,324 · Granted Apr 14, 2015

Magnetic recording medium for perpendicular magnetic recording

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Quick Facts
Patent No.
US 9,005,781
App. No.
13/620,324
Granted
Apr 14, 2015
Kind
B2
Abstract

A perpendicular recording medium having a perpendicular magnetic recording layer and a magnetically soft underlayer structure disposed beneath the recording layer. The soft underlayer structure includes at least first and second soft magnetic layers having different magnetic permeabilities to create a magnetic permeability gradient in the soft underlayer structure. One or more of the soft magnetic layers can be antiparallel coupled. The soft underlayer structure of the present invention having a magnetic permeability gradient advantageously leads to reduced adjacent track erasure (ATE) while maintaining good overwrite (OW) properties.

Claims (10)

1. A magnetic stack, comprising:

a substrate;

a soft underlayer structure disposed over the substrate, the soft underlayer structure comprising:

a first anti-parallel coupled soft magnetic layered unit having a first magnetic permeability;

a second anti-parallel coupled soft magnetic layered unit that is disposed over said first anti-parallel coupled soft magnetic layered unit and having a second magnetic permeability, wherein the first magnetic permeability is different than the second magnetic permeability; and

a third soft magnetic layer having a third magnetic permeability, wherein the third magnetic permeability is different than either of the first and second magnetic permeabilities.

2. The magnetic stack of claim 1 , further comprising a non-magnetic spacer layer disposed between the first and second anti-parallel coupled soft magnetic layered units.

3. The magnetic stack of claim 2 , wherein:

each of the first and second anti-parallel coupled soft magnetic layered units comprise two layers of a soft magnetic material and a non-magnetic Ru layer disposed between the layers of soft magnetic material; and

the nonmagnetic spacer layer comprises Ta.