• DocumentCode
    3602458
  • Title

    The Importance of Depth-Varying Fields for MAMR Switching-Field Reduction

  • Author

    Lei Xu ; Olson, Terry ; Lengsfield, Byron ; Shiimoto, Masato ; Sugiyama, Mikito ; Torabi, Adam

  • Author_Institution
    HGST, a Western Digital Co., San Jose, CA, USA
  • Volume
    51
  • Issue
    11
  • fYear
    2015
  • Firstpage
    1
  • Lastpage
    3
  • Abstract
    We present a micromagnetic modeling study of microwave assisted magnetic recording (MAMR) on a typical exchange-coupled four-layer media. With the help of an alternating current (ac) magnetic field, the switching field can be reduced, especially at the media resonant frequency. Typical hysteresis loop measurements employ a depth-invariant ac field; however, the field generated from a spin-torque oscillator (STO) varies with spacing. Considering this depth variance, the switching field reduction becomes less than observed with a depth-invariant ac field. Furthermore, we find an even smaller switching field reduction when using a realistic magnetic writer and STO fields to record a dc track on randomly magnetized grains. Consequently, we conclude that MAMR hysteresis loops employing a depth-invariant ac field significantly overestimate the ac field´s contribution to grain switching in an actual recording situation.
  • Keywords
    hysteresis; magnetic fields; magnetic recording; oscillators; AC magnetic field; DC track; MAMR hysteresis loops; MAMR switching-field reduction; STO; alternating current magnetic field; depth-invariant AC field; depth-varying fields; exchange-coupled four-layer media; grain switching; hysteresis loop measurements; magnetic writer; magnetized grains; media resonant frequency; micromagnetic modeling; microwave assisted magnetic recording; spin-torque oscillator; Magnetic anisotropy; Magnetic hysteresis; Magnetic recording; Magnetization; Media; Microwave oscillators; Switches; Hysteresis loop; MAMR; Magnetic recording; hysteresis loop; magnetic recording; micromagnetics; microwave; microwave assisted magnetic recording (MAMR); spin-torque oscillator; spin-torque oscillator (STO);
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2015.2437074
  • Filename
    7112135