Cryogenic Magnetization Dynamics in Chemically Stabilized, Tensile-Strained Ultrathin Yttrium Iron Garnets with Tunable Magnetic Anisotropy

  • Kim, Jihyung
  • Kim, Dongchang
  • Lee, Seung-Gi
  • Li, Yung-Cheng
  • Jeon, Jae-Chun
  • ... Jeon, Kun-Rok
  • 외 5명
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초록

We report an interfacial chemical stability-driven reduction of low-temperature damping losses in tensile-strained, ultrathin Y3Fe5O12 (YIG) films grown by pulsed laser deposition, exhibiting ultralow room-temperature damping constants and tunable magnetic anisotropy. Comparative broadband FMR measurements show that tensile-strained YIG films on Gd3Sc2Ga3O12 (GSGG) retain measurable damping even at nanometer thicknesses and cryogenic temperatures down to 2 K, outperforming relaxed films on Gd3Ga5O12. Based on static magnetometry measurements along with microstructural and compositional analyses, we attribute these enhanced dynamic properties to the suppression of interdiffusion across the YIG/GSGG interface, resulting from enhanced chemical stability and favorable growth kinetics by the presence of Sc. Our findings highlight the importance of chemical and kinetic factors in achieving a few-nanometer-thick YIG film with negligible low-temperature damping dissipation and perpendicular magnetic anisotropy for cryogenic spintronic applications.

키워드

interfacial chemical stabilitylow-temperature magnetization dynamicstensile-strained ultrathin yttrium iron garnet filmsthin-film growth kineticstunable magnetic anisotropyFERROMAGNETIC-RESONANCEMAGNONDIFFUSIONGROWTHFILMS
제목
Cryogenic Magnetization Dynamics in Chemically Stabilized, Tensile-Strained Ultrathin Yttrium Iron Garnets with Tunable Magnetic Anisotropy
저자
Kim, JihyungKim, DongchangLee, Seung-GiLi, Yung-ChengJeon, Jae-ChunYoon, JihoKomori, SachioArakawa, RyotaroTaniyama, TomoyasuParkin, Stuart S PJeon, Kun-Rok
DOI
10.1021/acsami.5c25678
발행일
2026-04
유형
Article; Early Access
저널명
ACS Applied Materials and Interfaces
18
13
페이지
19787 ~ 19796