The spectroscopic g-factor of epitaxial thin film Yttrium Iron Garnet (YIG) has been studied using a combination of ferromagnetic resonance spectroscopy and x-ray magnetic circular dichroism. The values obtained by the two techniques are found, within experimental error, to be in agreement using Kittel's original derivation for the g-factor. For an insulating material with an entirely Fe3+ configuration, a spin mixing correction to Kittel's derivation of the spectroscopic g-factor, as recently shown by Shaw et al. [Phys. Rev. Lett. 127, 207201 (2021)] for metallic systems, is not required and demonstrates that the spin mixing parameter is small in YIG due to negligible spin-orbit coupling
© 2018 IEEE. Liquid phase epitaxy of an 18 nm thick yttrium-iron garnet (YIG) film is achieved. Its ...
Resumen del trabajo presentado al 14th International Workshop on Magnetism & Superconductivity at th...
The spin Hall magnetoresistance (SHMR) is a recently discovered effect that occurs in a normal metal...
The spectroscopic g-factor of epitaxial thin film Yttrium Iron Garnet (YIG) has been studied using a...
We quantify the presence of spin mixed states in ferromagnetic 3D transition metals by precise measu...
We quantify the presence of spin mixed states in ferromagnetic 3D transition metals by precise measu...
We quantify the presence of spin mixed states in ferromagnetic 3D transition metals by precise measu...
Yttrium iron garnet has a very high Verdet constant, is transparent in the infrared and is an insula...
The magnetic insulator yttrium iron garnet can be grown with near perfection and is therefore and id...
We report the fabrication of epitaxial Y3Fe5O12 (YIG) thin films on Gd3Ga5O12 (111) using a chemical...
We have clarified the origin of a magnetically dead interface layer formed in yttrium iron garnet (Y...
We have clarified the origin of a magnetically dead interface layer formed in yttrium iron garnet (Y...
This work covers the complete study of the properties of high quality nm-thick sputtered Yttrium iro...
The nanopatterning of Yttrium Iron Garnets (YIGs) has proven to be a non-trivial problem even with a...
We report the fabrication of epitaxial Y3Fe5O12 (YIG) thin films on Gd3Ga5O12 (111) using a chemical...
© 2018 IEEE. Liquid phase epitaxy of an 18 nm thick yttrium-iron garnet (YIG) film is achieved. Its ...
Resumen del trabajo presentado al 14th International Workshop on Magnetism & Superconductivity at th...
The spin Hall magnetoresistance (SHMR) is a recently discovered effect that occurs in a normal metal...
The spectroscopic g-factor of epitaxial thin film Yttrium Iron Garnet (YIG) has been studied using a...
We quantify the presence of spin mixed states in ferromagnetic 3D transition metals by precise measu...
We quantify the presence of spin mixed states in ferromagnetic 3D transition metals by precise measu...
We quantify the presence of spin mixed states in ferromagnetic 3D transition metals by precise measu...
Yttrium iron garnet has a very high Verdet constant, is transparent in the infrared and is an insula...
The magnetic insulator yttrium iron garnet can be grown with near perfection and is therefore and id...
We report the fabrication of epitaxial Y3Fe5O12 (YIG) thin films on Gd3Ga5O12 (111) using a chemical...
We have clarified the origin of a magnetically dead interface layer formed in yttrium iron garnet (Y...
We have clarified the origin of a magnetically dead interface layer formed in yttrium iron garnet (Y...
This work covers the complete study of the properties of high quality nm-thick sputtered Yttrium iro...
The nanopatterning of Yttrium Iron Garnets (YIGs) has proven to be a non-trivial problem even with a...
We report the fabrication of epitaxial Y3Fe5O12 (YIG) thin films on Gd3Ga5O12 (111) using a chemical...
© 2018 IEEE. Liquid phase epitaxy of an 18 nm thick yttrium-iron garnet (YIG) film is achieved. Its ...
Resumen del trabajo presentado al 14th International Workshop on Magnetism & Superconductivity at th...
The spin Hall magnetoresistance (SHMR) is a recently discovered effect that occurs in a normal metal...