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 μm 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
International audienceWe investigate spin-wave resonance modes and their damping in insulating thin ...
© 2016 Author(s).We study experimentally with submicrometer spatial resolution the propagation of sp...
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...
Using conventional coplanar waveguides (CPWs), we excited spin waves with a wavelength λ down to 310...
International audienceWe report a study on spin conductance in ultra-thin films of Yttrium Iron Garn...
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 audienceWe investigate spin-wave resonance modes and their damping in insulating thin ...
© 2016 Author(s).We study experimentally with submicrometer spatial resolution the propagation of sp...
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...
Using conventional coplanar waveguides (CPWs), we excited spin waves with a wavelength λ down to 310...
International audienceWe report a study on spin conductance in ultra-thin films of Yttrium Iron Garn...
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 audienceWe investigate spin-wave resonance modes and their damping in insulating thin ...
© 2016 Author(s).We study experimentally with submicrometer spatial resolution the propagation of sp...
International audienceHigh quality nanometer-thick (20 nm, 7 nm and 4 nm) epitaxial YIG films have b...