IP Library Patent Application 12124734
Patent Application
App. No. 12/124,734

PERPENDICULAR MAGNETIC RECORDING MEDIUM, METHOD OF MANUFACTURING PERPENDICULAR MAGNETIC RECORDING MEDIUM, AND MAGNETIC RECORDING APPARATUS

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Patent No.
US None
App. No.
12/124,734
Abstract

A perpendicular magnetic recording medium having a substrate, a soft magnetic buffer layer formed on the substrate, an Ru/Ru alloy underlayer formed on the soft magnetic buffer layer, the Ru/Ru alloy underlayer including Ru or a Ru alloy, a recording layer formed on the Ru/Ru alloy underlayer, the recording layer including at least a layer including a plurality of magnetic particles having an easy axis oriented perpendicular to the substrate, and a non-magnetic material surrounding the plural magnetic particles, and a layered structure interposed between the soft magnetic buffer layer and the Ru/Ru alloy underlayer, the layered structure including at least an Ru/Ru alloy crystalline structure film including Ru or a Ru alloy, a first polycrystalline film including Ru or a Ru alloy, and a second polycrystalline film.

Claims (44)

1 . A perpendicular magnetic recording medium comprising:

a substrate;

a soft magnetic buffer layer formed on the substrate;

a Ru/Ru alloy underlayer formed on the soft magnetic buffer layer, the Ru/Ru alloy underlayer including Ru or a Ru alloy;

a recording layer formed on the Ru/Ru alloy underlayer, the recording layer including at least a layer including

a plurality of magnetic particles having an easy axis oriented perpendicular to the substrate, and

a non-magnetic material surrounding the plural magnetic particles; and

a layered structure interposed between the soft magnetic buffer layer and the Ru/Ru alloy underlayer, the layered structure including at least

a Ru/Ru alloy crystalline structure film including Ru or a Ru alloy,

a first polycrystalline film including Ru or a Ru alloy, and

a second polycrystalline film.

2 . The perpendicular magnetic recording medium as claimed in claim 1 , wherein the second polycrystalline film includes a NiAl alloy polycrystalline film or a NiAl based polycrystalline film having a single element material added to a NiAl alloy.

3 . The perpendicular magnetic recording medium as claimed in claim 2 , wherein the NiAl based polycrystalline film is positioned directly above the first polycrystalline film, wherein the first polycrystalline film is positioned directly below the Ru/Ru alloy crystalline structure film.

4 . The perpendicular magnetic recording medium as claimed in claim 2 , wherein the NiAl based polycrystalline film is positioned directly above the Ru/Ru alloy crystalline structure film, wherein the first polycrystalline film is positioned directly below the Ru/Ru alloy crystalline structure film.

5 . The perpendicular magnetic recording medium as claimed in claim 3 , wherein the layered structure further includes another Ru/Ru alloy crystalline structure film including Ru or a Ru alloy, wherein the other Ru/Ru alloy crystalline structure film is positioned directly above the second polycrystalline film.

6 . A perpendicular magnetic recording medium comprising:

a substrate;

a soft magnetic buffer layer formed on the substrate;

a Ru/Ru alloy underlayer formed on the soft magnetic buffer layer, the Ru/Ru alloy underlayer including Ru or a Ru alloy;

a recording layer formed on the Ru/Ru alloy underlayer, the recording layer including at least a layer including

a plurality of magnetic particles having an easy axis oriented perpendicular to the substrate, and

a non-magnetic material surrounding the plural magnetic particles; and

a layered structure interposed between the soft magnetic buffer layer and the Ru/Ru alloy underlayer, the layered structure including at least

a first Ru/Ru alloy crystalline structure film including Ru or a Ru alloy,

a NiAl based polycrystalline film positioned directly above the first Ru/Ru alloy crystalline structure film, and

a second Ru/Ru alloy crystalline structure film including Ru or a Ru alloy.

7 . The perpendicular magnetic recording medium as claimed in claim 1 , wherein the Ru alloy is an alloy having Ru as a main component, wherein when the Ru alloy is expressed as “Ru—X”, “X” includes at least one of Co, Cr, Fe, Ni, W, and Mn.

8 . The perpendicular magnetic recording medium as claimed in claim 2 , wherein the single element material includes at least one of B, Pt, W, Ag, Au, Pd, Nb, Ta, Cr, Si, and Ge.

9 . The perpendicular magnetic recording medium as claimed in claim 1 , wherein the Ru/Ru alloy crystalline structure film includes a crystalline structure having a height ranging from 1 nm through 2 nm.

10 . The perpendicular magnetic recording medium as claimed in claim 1 , wherein the Ru/Ru alloy crystalline structure film includes a crystalline structure having a grain size no greater than 2 nm.

11 . The perpendicular magnetic recording medium as claimed in claim 2 , wherein the second polycrystalline film has a thickness ranging from 2 nm through 4 nm.

12 . A magnetic recording apparatus comprising:

a recording/reproducing part including a recording head; and

the perpendicular recording medium as claimed in claim 1 .

13 . A method of manufacturing a perpendicular magnetic recording medium comprising the steps of:

a) forming a layered structure including at least a Ru/Ru alloy crystalline structure film including Ru or a Ru alloy on a substrate, a first polycrystalline film including Ru or a Ru alloy, and a second polycrystalline film;

b) forming an Ru/Ru alloy underlayer formed on the layered structure, the Ru/Ru alloy underlayer including crystal grains of Ru or Ru alloy that are spatially separated from each other by gap parts formed in the Ru/Ru alloy underlayer; and

c) forming a recording layer on the Ru/Ru alloy underlayer, the recording layer including at least a layer including a plurality of magnetic particles having an easy axis oriented perpendicular to the substrate and a non-magnetic material surrounding the plural magnetic particles.

14 . A method of manufacturing a perpendicular magnetic recording medium comprising the steps of:

a) forming a layered structure including at least a first Ru/Ru alloy crystalline structure film including Ru or a Ru alloy, a NiAl based polycrystalline film positioned directly above the first Ru/Ru alloy crystalline structure film, and a second Ru/Ru alloy crystalline structure film including Ru or a Ru alloy;

b) forming a Ru/Ru alloy underlayer formed on the layered structure, the Ru/Ru alloy underlayer including crystal grains of Ru or Ru alloy that are spatially separated from each other by gap parts formed in the Ru/Ru alloy underlayer; and

c) forming a recording layer on the Ru/Ru alloy underlayer, the recording layer including at least a layer including a plurality of magnetic particles having an easy axis oriented perpendicular to the substrate and a non-magnetic material surrounding the plural magnetic particles.

15 . The method of manufacturing a perpendicular magnetic recording medium as claimed in claim 13 , wherein the Ru/Ru alloy crystalline structure film has a crystalline structure formed by sputtering a Ru or a Ru alloy target with an argon gas pressure ranging from 7 Pa to 8.5 Pa. at a deposition rate no greater than 0.5 nm/sec.

16 . The method of manufacturing a perpendicular magnetic recording medium as claimed in claim 13 , wherein the second polycrystalline film is formed as a NiAl alloy polycrystalline film or a NiAl based polycrystalline film having a single element material added to a NiAl alloy.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2010
From: FUJITSU LIMITED
To: SHOWA DENKO K.K.
Reel/Frame 023950/0008 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2008
From: MUKAI, RYOICHI
To: FUJITSU LIMITED
Reel/Frame 020980/0346 →