IP Library Granted Patent US 10,573,449
Granted Patent B2
US 10,573,449 · App. 16/081,022 · Granted Feb 25, 2020

Tunnel magnetoresistive effect element

Inventor: Tomoyuki Sasaki (Tokyo, JP)
Assignee: TDK CORPORATION
H01F10/3259G11C11/161H01F10/329H01F10/3272H01F10/3286H01F41/34H01L27/222H01L27/228H01L43/02H01L43/06H01L43/08H01L43/10H01L43/12
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Quick Facts
Patent No.
US 10,573,449
App. No.
16/081,022
Granted
Feb 25, 2020
Kind
B2
Abstract

A TMR element includes a magnetic tunnel junction element unit and a side wall portion that includes an insulation material and is disposed on a side surface of the magnetic tunnel junction element unit. The magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer that is stacked in a stack direction between the reference layer and the magnetization free layer, and a cap layer is stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side. The side wall portion includes a first region that includes the insulation material and covers a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit.

Claims (78)

1. A tunnel magnetoresistive effect element comprising:

a magnetic tunnel junction element unit; and

a side wall portion including an insulation material and being disposed on a side surface of the magnetic tunnel junction element unit,

wherein:

the magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer stacked along a stack direction between the reference layer and the magnetization free layer, and a cap layer stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side,

the side wall portion includes a first region including the insulation material and covering a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit,

the first region includes, as a contained chemical element, at least one of chemical elements except oxygen constituting the at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit, and

a distance from an outer periphery of the first region to a side surface of the tunnel barrier layer is greater than a distance from the outer periphery of the first region to a side surface of the cap layer.

2. A tunnel magnetoresistive effect element comprising:

a magnetic tunnel junction element unit; and

a side wall portion including an insulation material and being disposed on a side surface of the magnetic tunnel junction element unit,

wherein:

the magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer stacked along a stack direction between the reference layer and the magnetization free layer, and a cap layer stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side,

the side wall portion includes a first region including the insulation material and covering a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit,

the first region includes, as a contained chemical element, at least one of chemical elements except oxygen constituting the at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit,

a magnetization direction of the reference layer is substantially fixed along the stack direction,

the cap layer includes a perpendicular magnetization inducing layer, and

the perpendicular magnetization inducing layer imparts magnetic anisotropy along the stack direction to the magnetization free layer.

3. A tunnel magnetoresistive effect element comprising:

a magnetic tunnel junction element unit; and

a side wall portion including an insulation material and being disposed on a side surface of the magnetic tunnel junction element unit,

wherein:

the magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer stacked along a stack direction between the reference layer and the magnetization free layer, and a cap layer stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side,

the side wall portion includes a first region including the insulation material and covering a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit,

the first region includes, as a contained chemical element, at least one of chemical elements except oxygen constituting the at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit, and

the tunnel barrier layer is formed of an oxide material having a spinel structure represented by General Formula AB 2 O 4 , where:

A is at least one chemical element selected from a group consisting of Mg and Zn, and

B is at least one chemical element selected from a group consisting of Al, Ga, and In.

4. A tunnel magnetoresistive effect element comprising:

a magnetic tunnel junction element unit; and

a side wall portion including an insulation material and being disposed on a side surface of the magnetic tunnel junction element unit,

wherein:

the magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer stacked along a stack direction between the reference layer and the magnetization free layer, and a cap layer stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side,

the side wall portion includes:

a first region including the insulation material and covering a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit, and

a second region including the insulation material and covering an outer periphery of the first region,

the first region is positioned between the magnetic tunnel junction element unit and the second region, and includes, as a contained chemical element, at least one of chemical elements except oxygen constituting the at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit,

a magnetization direction of the reference layer is substantially fixed along the stack direction,

the cap layer includes a perpendicular magnetization inducing layer, and

the perpendicular magnetization inducing layer imparts magnetic anisotropy along the stack direction to the magnetization free layer.

5. A tunnel magnetoresistive effect element comprising:

a magnetic tunnel junction element unit; and

a side wall portion including an insulation material and being disposed on a side surface of the magnetic tunnel junction element unit,

wherein:

the magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer stacked along a stack direction between the reference layer and the magnetization free layer, and a cap layer stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side,

the side wall portion includes:

a first region including the insulation material and covering a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit, and

a second region including the insulation material and covering an outer periphery of the first region,

the first region is positioned between the magnetic tunnel junction element unit and the second region, and includes, as a contained chemical element, at least one of chemical elements except oxygen constituting the at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit, and

the tunnel barrier layer is formed of an oxide material having a spinel structure represented by General Formula AB 2 O 4 , where:

A is at least one chemical element selected from a group consisting of Mg and Zn, and

B is at least one chemical element selected from a group consisting of Al, Ga, and In.

6. A tunnel magnetoresistive effect element comprising:

a magnetic tunnel junction element unit; and

a side wall portion including an insulation material and being disposed on a side surface of the magnetic tunnel junction element unit,

wherein:

the magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer stacked along a stack direction between the reference layer and the magnetization free layer, and a cap layer stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side,

the side wall portion includes:

a first region including the insulation material and covering a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit, and

a second region including the insulation material and covering an outer periphery of the first region,

the first region is positioned between the magnetic tunnel junction element unit and the second region, and includes a nitride including at least one of B, Al, and Si as a contained chemical element,

the second region includes a nitride including at least one of B, Al, and Si as a contained chemical element,

a magnetization direction of the reference layer is substantially fixed along the stack direction,

the cap layer includes a perpendicular magnetization inducing layer, and

the perpendicular magnetization inducing layer imparts magnetic anisotropy along the stack direction to the magnetization free layer.

7. A tunnel magnetoresistive effect element comprising:

a magnetic tunnel junction element unit; and

a side wall portion including an insulation material and being disposed on a side surface of the magnetic tunnel junction element unit,

wherein:

the magnetic tunnel junction element unit includes a reference layer, a magnetization free layer, a tunnel barrier layer stacked along a stack direction between the reference layer and the magnetization free layer, and a cap layer stacked on the side of the magnetization free layer opposite to the tunnel barrier layer side,

the side wall portion includes:

a first region including the insulation material and covering a side surface of at least one of the reference layer, the tunnel barrier layer, the magnetization free layer, or the cap layer of the magnetic tunnel junction element unit, and

a second region including the insulation material and covering an outer periphery of the first region,

the first region is positioned between the magnetic tunnel junction element unit and the second region, and includes a nitride including at least one of B, Al, and Si as a contained chemical element,

the second region includes a nitride including at least one of B, Al, and Si as a contained chemical element, and

the tunnel barrier layer is formed of an oxide material having a spinel structure represented by General Formula AB 2 O 4 , where:

A is at least one chemical element selected from a group consisting of Mg and Zn, and

B is at least one chemical element selected from a group consisting of Al, Ga, and In.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2018
From: SASAKI, TOMOYUKI
To: TDK CORPORATION
Reel/Frame 046747/0931 →
Continuity (1)
Related Publication 20190180900A1 · Jun 13, 2019
Cited By (2)
US 12,457,905 US 12,598,918