Heat assisted magnetic recording writer having integrated polarization rotation waveguides

US2016379677A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016379677-A1
Application numberUS-201514752482-A
CountryUS
Kind codeA1
Filing dateJun 26, 2015
Priority dateJun 26, 2015
Publication dateDec 29, 2016
Grant date

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A heat assisted magnetic recording (HAMR) writer is described. The HAMR writer is coupled with a laser that provides energy having a first polarization state. The HAMR writer has an air-bearing surface (ABS) configured to reside in proximity to a media during use, a plurality of waveguides, a main pole and at least one coil. The main pole writes to the media and is energized by the coil(s). The waveguides receive the energy from the laser and direct the energy toward the ABS. The waveguides include an input waveguide and an output waveguide. The input waveguide is configured to carry light having the first polarization state. The output waveguide is configured to carry light having a second polarization state different from the first polarization state. The waveguides are optically coupled and configured to transfer the energy from the first polarization state to the second polarization state.

First claim

Opening claim text (preview).

1 . A heat assisted magnetic recording (HAMR) write apparatus coupled with a laser for providing energy having a first polarization state, the HAMR write apparatus including an air-bearing surface (ABS) configured to reside in proximity to a media during use and comprising: a main pole; at least one coil for energizing the main pole; and a plurality of waveguides for receiving the energy from the laser and for directing the energy toward the ABS, the plurality of waveguides including an input waveguide and an output waveguide, the input waveguide configured to carry light having the first polarization state, the output waveguide configured to carry light having a second polarization state different from the first polarization state, the plurality of waveguides being optically coupled and configured to transfer the energy from the first polarization state to the second polarization state, the input waveguide having a input long axis and an input short axis in a first plane perpendicular to a first direction of enemy propagation in the input waveguide, the output waveguide having an output long axis and an output short axis in a second plane perpendicular to a second direction of enemy propagation in the output waveguide, the input long axis being substantially perpendicular to the output long axis. 2 . The HAMR write apparatus of claim 1 further comprising: a near-field transducer (NFT) proximate to the ABS and for focusing the energy onto a region of the media, the NFT being optically coupled with the output waveguide and receiving the energy having the second polarization state. 3 . The HAMR write apparatus of claim 2 wherein the plurality of waveguides consists of the input waveguide and the output waveguide coupled with the input waveguide. 4 . The HAMR write apparatus of claim 1 wherein the input waveguide and the output waveguide are offset in a direction perpendicular to the first direction and the second direction in a coupling region for the input waveguide and the output waveguide. 5 . The HAMR transducer of claim 4 wherein the input waveguide and the output waveguide are offset by not more than the input long axis. 6 . The HAMR transducer of claim 4 wherein the input waveguide and the output waveguide are offset by not more than the output short axis. 7 . The HAMR transducer of claim 4 wherein the coupling region has a coupling length in the direction of transmission and wherein the first direction of propagation and the second direction of propagation are equal in the coupling region. 8 . The HAMR transducer of claim 7 wherein at least one of the input waveguide and the output waveguide tapers along the coupling length such that the at least one of the input waveguide terminates at a first end of the coupling length and the output waveguide terminates at a second end of the coupling length opposite to the first end. 9 . A heat assisted magnetic recording (HAMR) write apparatus coupled with a laser for providing energy having a first polarization state, the HAMR write apparatus including an air-bearing surface (ABS) configured to reside in proximity to a media during use and comprising: a main pole; at least one coil for energizing the main pole; and a plurality of waveguides for receiving the energy from the laser and for directing the energy toward the ABS, the plurality of waveguides including an input waveguide and an output waveguide, the input waveguide configured to carry light having the first polarization state, the output waveguide configured to carry light having a second polarization state different from the first polarization state, the plurality of waveguides being optically coupled and configured to transfer the energy from the first polarization state to the second polarization state, the input waveguide having a input long axis and an input short axis in a first plane perpendicular to a first direction of energy propagation in the input waveguide, the output waveguide having an output long axis and an output short axis in a second plane perpendicular to a second direction of energy propagation in the output waveguide, the input long axis being substantially perpendicular to the output long axis, the input waveguide and the output waveguide being offset in a direction perpendicular to the first direction and the second direction in a coupling region for the input waveguide and the output waveguide; wherein the input waveguide and the output waveguide are separated by an etch stop layer. 10 . The HAMR transducer of claim 3 wherein the plurality of waveguides include at least one of a plurality of directionally coupled waveguides and a plurality of adiabatically coupled waveguides. 11 . A heat assisted magnetic recording (HAMR) disk drive comprising: a media; a laser for providing energy having a first polarization state; a slider having an air-bearing surface (ABS) and a HAMR write transducer, the HAMR write transducer including a main pole, at least one coil for energizing the main pole and a plurality of waveguides, the plurality of waveguides receiving the energy from the laser and directing the energy toward the ABS, the plurality of waveguides including an input waveguide and an output waveguide, the input waveguide configured to carry light from the laser having the first polarization state, the output waveguide configured to carry light having a second polarization state different from the first polarization state, the plurality of waveguides being optically coupled and configured to transfer the energy from the first polarization state to the second polarization state, the input waveguide having a input long axis and an input short axis in a first plane perpendicular to a first direction of energy propagation in the input waveguide, the output waveguide having an output long axis and an output short axis in a second plane perpendicular to a second direction of energy propagation in the output waveguide, the input long axis being substantially perpendicular to the output long axis. 12 . The HAMR disk drive claim 11 wherein the HAMR write transducer further includes: a near-field transducer (NFT) proximate to the ABS and for focusing the energy onto a region of the media, the NFT being optically coupled with the output waveguide and receiving energy having the second polarization state. 13 . The HAMR disk drive of claim 12 wherein the plurality of waveguides consists of the input waveguide and the output waveguide coupled with the input waveguide, wherein the input waveguide and the output waveguide are offset in a direction perpendicular to the first direction and the second direction in a coupling region for the input waveguide and the output waveguide. 14 . A method for fabricating a heat assisted magnetic recording (HAMR) write apparatus coupled with a laser for providing energy having a first polarization state, the HAMR write apparatus including an air-bearing surface (ABS) configured to reside in proximity to a media during use, the method comprising: providing a main pole; providing at least one coil for energizing the main pole; and providing a plurality of waveguides for receiving the energy from the laser and for directing the energy toward the ABS, the plurality of waveguides including an input waveguide and an output waveguide, the input waveguide configured to carry light having the first polarization state, the output waveguide configured to carry light having a second polarization state different from the first polarization state, the plurality of waveguides being optically coupled and configured to transfer the energy from the first polarization state to the second po

Assignees

Inventors

Classifications

  • G11B5/6088Primary

    Optical waveguide in or on flying head · CPC title

  • Thermally assisted recording using an auxiliary energy source for heating the recording layer locally to assist the magnetization reversal · CPC title

  • Construction or disposition of windings · CPC title

  • Design of the air bearing surface · CPC title

  • G11B5/4866Primary

    the arm comprising an optical waveguide, e.g. for thermally-assisted recording · CPC title

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What does patent US2016379677A1 cover?
A heat assisted magnetic recording (HAMR) writer is described. The HAMR writer is coupled with a laser that provides energy having a first polarization state. The HAMR writer has an air-bearing surface (ABS) configured to reside in proximity to a media during use, a plurality of waveguides, a main pole and at least one coil. The main pole writes to the media and is energized by the coil(s). The…
Who is the assignee on this patent?
Western Digital (Fremont) Llc
What technology area does this patent fall under?
Primary CPC classification G11B5/6088. Mapped technology areas include Physics.
When was this patent published?
Publication date Thu Dec 29 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).