IP Library › Granted Patent US 11,176,962
Granted Patent B1
US 11,176,962 · App. 17/017,167 · Granted Nov 16, 2021

Heat-assisted magnetic recording laser with a curved facet

Inventors: Aidan Dominic Goggin (Donegal, IE); Reyad Mehfuz (Londonderry, GB); John Moloney (Castleconnell, IE)
Assignee: Seagate Technology LLC
G11B5/4866H01S5/1082G11B5/6088G11B2005/0021
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Quick Facts
Patent No.
US 11,176,962
App. No.
17/017,167
Granted
Nov 16, 2021
Kind
B1
Abstract

A heat-assisted magnetic recording head includes a slider body having a waveguide that delivers light to a near-field transducer. The waveguide is optically coupled to an input coupler a of the slider body that receives the light. A laser diode is mounted on or in the slider body. The laser diode has an integral exit facet proximate the input coupler. The exit facet has a curved profile that modifies a shape of the light emitted from the exit facet into the input coupler.

Claims (24)

1. A heat-assisted magnetic recording head, comprising:

a slider body having a waveguide that delivers light to a near-field transducer, the waveguide optically coupled to an input coupler of the slider body that receives the light; and

a laser diode mounted on or in the slider body, the laser diode comprising an integral exit facet at an end of the laser diode, the exit facet proximate an input surface of the input coupler, the exit facet having a curved profile that modifies a shape of the light emitted from the exit facet into the input coupler, the curved profile extending from side-to-side across a width of the laser diode such that no part of the end of the laser diode is flat against the input surface.

2. The heat-assisted magnetic recording head of claim 1 , wherein the curved profile comprises a piecewise linear approximation of a convex profile.

3. The heat-assisted magnetic recording head of claim 1 , wherein the curved profile comprises a piecewise linear approximation of a concave profile.

4. The heat-assisted magnetic recording head of claim 1 , wherein the curved profile comprises a hyperbolic curve.

5. The heat-assisted magnetic recording head of claim 1 , wherein curved profile comprises linear edges that are joined to a convex curve, the linear edges extending smoothly and tangentially from the convex curve to sides of the laser diode.

6. The heat-assisted magnetic recording head of claim 1 , wherein the curved profile is asymmetric and shifted relative to a center of the laser diode.

7. The heat-assisted magnetic recording head of claim 1 , wherein the curved profile influences a divergence angle of the light which allows a separation between the laser diode and the input coupler to be increased relative to a planar exit facet, wherein the separation is between 1.5 μm to 2.5 μm.

8. The heat-assisted magnetic recording head of claim 1 , wherein the curved profile influences a divergence angle of the light which allows the input coupler to have a smaller dimension near the external surface relative to a laser with a planar exit facet, wherein the smaller dimension is less than a width of the laser diode.

9. A heat-assisted magnetic recording head, comprising:

a slider body having a waveguide that delivers light to a near-field transducer, the waveguide optically coupled to an input coupler of the slider body that receives the light; and

a laser diode mounted proximate the input coupler of the slider body, the laser diode emitting light from an integral exit facet having an outer curved profile that modifies a shape of the light emitted from the exit facet, wherein an inside facing surface of a coating layer on the exit facet is curved differently than the outer curved profile.

10. The heat-assisted magnetic recording head of claim 9 , wherein the outer curved profile comprises a piecewise linear approximation of a convex profile.

11. The heat-assisted magnetic recording head of claim 9 , wherein the outer curved profile comprises a piecewise linear approximation of a concave profile.

12. The heat-assisted magnetic recording head of claim 9 , wherein the outer curved profile comprises hyperbolic curve.

13. The heat-assisted magnetic recording head of claim 9 , wherein outer curved profile comprises linear edges that are joined to a convex curve, the linear edges extending smoothly and tangentially from the convex curve to sides of the laser diode.

14. The heat-assisted magnetic recording head of claim 9 , wherein the outer curved profile is asymmetric and shifted relative to a center of the laser diode.

15. The heat-assisted magnetic recording head of claim 9 , wherein the outer curved profile influences a divergence angle of the light which allows a separation between the laser diode and the input coupler to be increased relative to a planar exit facet, wherein the separation is between 1.5 μm to 2.5 μm.

16. The heat-assisted magnetic recording head of claim 9 , wherein the outer curved profile influences a divergence angle of the light which allows the input coupler to have a smaller dimension near the external surface relative to a laser with a planar exit facet, wherein the smaller dimension is less than a width of the laser diode.

17. The heat-assisted magnetic recording head of claim 1 , wherein an inside facing surface of a coating layer on the exit facet is curved differently than the curved profile.

18. The heat-assisted magnetic recording head of claim 17 , wherein the inside facing surface has a different radius of curvature than the curved profile.

19. The heat-assisted magnetic recording head of claim 9 , wherein the inside facing surface has a different radius of curvature than the outer curved profile.

20. The heat-assisted magnetic recording head of claim 9 , wherein the outer curved profile extends from side-to-side across a width of the laser diode such that no part of the end of the laser diode is flat against the input surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2020
From: GOGGIN, AIDAN DOMINIC; MEHFUZ, REYAD; MOLONEY, JOHN
To: SEAGATE TECHNOLOGY LLC
Reel/Frame 053737/0431 →
Cited By (2)
US 12,586,983 US 12,664,999