We report spin wave propagation experiments in thin yttrium iron garnet (YIG) films. Using time-resolved scanning Kerr microscopy we extract the mode structure of the spin waves. For quasi-single-mode excitation, the spin wave decay can be fitted with a damped harmonic oscillator function providing us with information about the attenuation length. We measure values of about 2.7 and 3.6 mu m for the spin wave decay length of 38- and 49-nm-thick YIG samples, respectively. Micromagnetic simulations are performed to compare experimental and simulated modes. The data are in very good agreement with these simulations
This work covers the complete study of the properties of high quality nm-thick sputtered Yttrium iro...
We report on an experimental study on the spin-waves relaxation rate in two series of nanodisks of d...
International audienceHigh quality nanometer-thick (20 nm, 7 nm and 4 nm) epitaxial YIG films have b...
We report spin wave propagation experiments in thin yttrium iron garnet (YIG) films. Using time-reso...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
International audienceWe report a study on spin conductance in ultra-thin films of Yttrium Iron Garn...
Using conventional coplanar waveguides (CPWs), we excited spin waves with a wavelength λ down to 310...
We experimentally investigate the propagation of pulsed magnetostatic surface spin-wave (magnon) sig...
Yttrium iron garnet (YIG) is a magnetic insulator with record-low damping, allowing spin-wave transp...
We report on an experimental study on the spin-waves relaxation rate in two series of nanodisks of d...
Yttrium iron garnet has a very high Verdet constant, is transparent in the infrared and is an insula...
This work covers the complete study of the properties of high quality nm-thick sputtered Yttrium iro...
We report on an experimental study on the spin-waves relaxation rate in two series of nanodisks of d...
International audienceHigh quality nanometer-thick (20 nm, 7 nm and 4 nm) epitaxial YIG films have b...
We report spin wave propagation experiments in thin yttrium iron garnet (YIG) films. Using time-reso...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
International audienceWe report a study on spin conductance in ultra-thin films of Yttrium Iron Garn...
Using conventional coplanar waveguides (CPWs), we excited spin waves with a wavelength λ down to 310...
We experimentally investigate the propagation of pulsed magnetostatic surface spin-wave (magnon) sig...
Yttrium iron garnet (YIG) is a magnetic insulator with record-low damping, allowing spin-wave transp...
We report on an experimental study on the spin-waves relaxation rate in two series of nanodisks of d...
Yttrium iron garnet has a very high Verdet constant, is transparent in the infrared and is an insula...
This work covers the complete study of the properties of high quality nm-thick sputtered Yttrium iro...
We report on an experimental study on the spin-waves relaxation rate in two series of nanodisks of d...
International audienceHigh quality nanometer-thick (20 nm, 7 nm and 4 nm) epitaxial YIG films have b...