Magnetic composite film for magnetic storage as well as preparation method of magnetic composite film
A composite film and magnetic storage technology, applied in the direction of coated magnetic layer, magnetic recording layer, disc carrier manufacturing, etc., can solve problems affecting the magnetization and interference of perpendicular magnetic recording media, achieve enhanced recording capability and reproduction efficiency, and improve The effect of storage density and uniform film thickness
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2020-08-11
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention belongs to the technical field of magnetic recording, and in particular relates to a magnetic composite film for magnetic storage and a preparation method thereof. Background technique
[0002] The perpendicular magnetic recording medium is the key component of the memory, with perpendicular magnetic anisotropy. The magnetic field generated by the magnetic read / write head perpendicular to the plane of the magnetic recording layer forms a recording bit, so that the magnetized adjacent recording bits are antiparallel State, so that the magnetic moments of adjacent recording bits attract each other, which is conducive to stabilizing the magnetization state of the recording bit and improving its coercive force, thereby facilitating the realization of higher density information storage. The existing perpendicular magnetic recording medium is mainly an alloy film composed of two or more elements in Fe, Co, Ni, Pt, and Pd. In order to improve it...
Examples
Embodiment 1
[0022] A magnetic composite film for magnetic storage: the magnetic composite film uses a nonmagnetic silicon wafer as a substrate, and a 15nm manganese zinc ferrite soft magnetic layer, an alloy hard magnetic layer, and a 20nm barium ferrite hard magnetic layer are sequentially arranged on its surface ; The alloy hard magnetic layer is [FePt / FeCo] with perpendicular magnetic anisotropy 3 Composite film layer, wherein the molar ratio of Fe and Pt in the FePt alloy layer is 1:0.5, the thickness of the single-layer FePt alloy layer is 4.5nm, the molar ratio of Fe and Co in the FeCo alloy layer is 1:1, and the single-layer FeCo alloy layer The layer thickness was 3 nm.
[0023] A method for preparing a magnetic composite film for magnetic storage, comprising the following steps:
[0024] S1: Pretreatment: washing and drying the silicon wafer;
[0025] S2: Sputtering soft magnetic layer: In an argon atmosphere, control the gas flow rate to 50sscm, use silicon wafer as the substr...
Embodiment 2
[0029] A magnetic composite film for magnetic storage: the magnetic composite film uses a non-magnetic silicon wafer as a substrate, and a 20nm manganese zinc ferrite soft magnetic layer, an alloy hard magnetic layer, and a 25nm barium ferrite hard magnetic layer are successively arranged on the surface of the magnetic composite film ; The alloy hard magnetic layer is [FePt / FeCo] with perpendicular magnetic anisotropy 5 Composite film layer, wherein the molar ratio of Fe and Pt in the FePt alloy layer is 1:1.1, the thickness of the single-layer FePt alloy layer is 3nm, the molar ratio of Fe and Co in the FeCo alloy layer is 1:1.5, and the single-layer FeCo alloy layer The thickness is 1.5nm.
[0030] A method for preparing a magnetic composite film for magnetic storage, comprising the following steps:
[0031] S1: Pretreatment: washing and drying the silicon wafer;
[0032] S2: Sputtering soft magnetic layer: In an argon atmosphere, control the gas flow rate to 50-80sscm, us...