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Recent advances in development of magnetic garnet thin films for applications in spintronics and photonics
Magnetic garnets (MG) are insulators with superior magnetic and optical properties, such as
high Curie temperature, highly tunable bulk perpendicular magnetic anisotropy (PMA) …
high Curie temperature, highly tunable bulk perpendicular magnetic anisotropy (PMA) …
Ultra-low dam** insulating magnetic thin films get perpendicular
A magnetic material combining low losses and large perpendicular magnetic anisotropy
(PMA) is still a missing brick in the magnonic and spintronic fields. We report here on the …
(PMA) is still a missing brick in the magnonic and spintronic fields. We report here on the …
Low dam** and microstructural perfection of sub-40nm-thin yttrium iron garnet films grown by liquid phase epitaxy
C Dubs, O Surzhenko, R Thomas, J Osten… - Physical Review …, 2020 - APS
The field of magnon spintronics is experiencing an increasing interest in the development of
solutions for spin-wave-based data transport and processing technologies that are …
solutions for spin-wave-based data transport and processing technologies that are …
Effect of strain-induced anisotropy on magnetization dynamics in Y3Fe5O12 films recrystallized on a lattice-mismatched substrate
A Krysztofik, S Özoğlu, RD McMichael, E Coy - Scientific reports, 2021 - nature.com
We report on the correlation of structural and magnetic properties of Y3Fe5O12 (YIG) films
deposited on Y3Al5O12 substrates using pulsed laser deposition. The recrystallization …
deposited on Y3Al5O12 substrates using pulsed laser deposition. The recrystallization …
Perpendicular magnetic anisotropy in Bi-substituted yttrium iron garnet films
Magnetic garnet thin films exhibiting perpendicular magnetic anisotropy (PMA) and ultra-low
dam** have recently been explored for applications in magnonics and spintronics. Here …
dam** have recently been explored for applications in magnonics and spintronics. Here …
[HTML][HTML] Tunable perpendicular magnetic anisotropy in epitaxial Y3Fe5O12 films
G Li, H Bai, J Su, ZZ Zhu, Y Zhang, JW Cai - APL Materials, 2019 - pubs.aip.org
High quality epitaxial (111) Y 3 Fe 5 O 12 (YIG) films are fabricated by annealing amorphous
precursor films that are sputtering deposited on three kinds of single crystal garnet …
precursor films that are sputtering deposited on three kinds of single crystal garnet …
Interfacial roughness driven manipulation of magnetic anisotropy and coercivity in ultrathin thulium iron garnet films
We have investigated the magnetic properties of thulium iron garnet (Tm 3 Fe 5 O 12, TmIG)
thin films grown on {111} gadolinium gallium garnet (Gd 3 Ga 5 O 12, GGG) substrates …
thin films grown on {111} gadolinium gallium garnet (Gd 3 Ga 5 O 12, GGG) substrates …
Unusual anomalous Hall effect in perpendicularly magnetized YIG films with a small Gilbert dam** constant
QB Liu, KK Meng, ZD Xu, T Zhu, XG Xu, J Miao, Y Jiang - Physical Review B, 2020 - APS
The Y 3 F e 5 O 12 (YIG) films with perpendicular magnetic anisotropy (PMA) have recently
attracted a great deal of attention for spintronics applications. Here, we report the induced …
attracted a great deal of attention for spintronics applications. Here, we report the induced …
Magnetic properties and domain structure of ultrathin yttrium iron garnet/Pt bilayers
J Mendil, M Trassin, Q Bu, J Schaab… - Physical Review …, 2019 - APS
We report on the structure, magnetization, magnetic anisotropy, and domain morphology of
ultrathin yttrium iron garnet (YIG)/Pt films with thickness ranging from 3 to 90 nm. We find that …
ultrathin yttrium iron garnet (YIG)/Pt films with thickness ranging from 3 to 90 nm. We find that …
Large Tunable Perpendicular Magnetic Anisotropy in (x = 0–3) Epitaxial Films with Minor Changes in Switching Current
We show perpendicular magnetic anisotropy (PMA) in substituted rare-earth iron garnet Y
3− x Tm x Fe 5 O 12 (x= 0–3) films epitaxially grown on (111)(Gd 0.63 Y 2.37)(Sc 2 Ga 3) O …
3− x Tm x Fe 5 O 12 (x= 0–3) films epitaxially grown on (111)(Gd 0.63 Y 2.37)(Sc 2 Ga 3) O …