International audienceWe investigate spin-wave resonance modes and their damping in insulating thin films of bismuth-substituted yttrium iron garnet by performing femtosecond magneto-optical pump-probe experiments. For large magnetic fields in the range below the magnetization saturation, we find that the damping of high-order standing spin-wave (SSW) modes is about 40 times lower than that for the fundamental one. The observed phenomenon can be explained by considering different features of magnetic anisotropy and exchange fields that, respectively, define the precession frequency for fundamental and high-order SSWs. These results provide further insight into SSWs in iron garnets and may be exploited in many new photomagnonic devices
In this paper, we investigate the magnetic, optical, and lattice responses of a Pt Cu Bi1Y2Fe5O12 Gd...
Spin waves are collective excitations in magnetically ordered materials. Early spin-wave devices fin...
International audienceWe report a study on spin conductance in ultra-thin films of Yttrium Iron Garn...
International audienceWe investigate spin-wave resonance modes and their damping in insulating thin ...
International audienceWe demonstrate that femtosecond laser pulses allow triggering high-frequency s...
| openaire: EC/FP7/307502/EU//E-CONTROLSpin waves in ferrimagnetic yttrium iron garnet (YIG) films w...
Yttrium iron garnet (YIG) is a magnetic insulator with record-low damping, allowing spin-wave transp...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
We report spin wave propagation experiments in thin yttrium iron garnet (YIG) films. Using time-reso...
International audienceIn this paper, we investigate the magnetic, optical, and lattice responses of ...
International audienceBased on micromagnetic simulations and experimental observations of the magnet...
We perform ultrafast pump-probe measurements on a nanometer-thick crystalline Bi-doped yttrium iron ...
In this paper, we investigate the magnetic, optical, and lattice responses of a Pt Cu Bi1Y2Fe5O12 Gd...
Spin waves are collective excitations in magnetically ordered materials. Early spin-wave devices fin...
International audienceWe report a study on spin conductance in ultra-thin films of Yttrium Iron Garn...
International audienceWe investigate spin-wave resonance modes and their damping in insulating thin ...
International audienceWe demonstrate that femtosecond laser pulses allow triggering high-frequency s...
| openaire: EC/FP7/307502/EU//E-CONTROLSpin waves in ferrimagnetic yttrium iron garnet (YIG) films w...
Yttrium iron garnet (YIG) is a magnetic insulator with record-low damping, allowing spin-wave transp...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
We report spin wave propagation experiments in thin yttrium iron garnet (YIG) films. Using time-reso...
International audienceIn this paper, we investigate the magnetic, optical, and lattice responses of ...
International audienceBased on micromagnetic simulations and experimental observations of the magnet...
We perform ultrafast pump-probe measurements on a nanometer-thick crystalline Bi-doped yttrium iron ...
In this paper, we investigate the magnetic, optical, and lattice responses of a Pt Cu Bi1Y2Fe5O12 Gd...
Spin waves are collective excitations in magnetically ordered materials. Early spin-wave devices fin...
International audienceWe report a study on spin conductance in ultra-thin films of Yttrium Iron Garn...