Spin-lattice coupling is one of the most prominent interactions mediating response of spin ensemble to ultrafast optical excitation. Here we exploit optically generated coherent and incoherent phonons to drive coherent spin dynamics, i.e. precession, in thin films of magnetostrictive metal Galfenol. We demonstrate unambiguously that coherent phonons, also seen as dynamical strain generated due to picosecond lattice temperature raise, give raise to magnetic anisotropy changes of the optically excited magnetic film; and this contribution may be comparable to or even dominate over the contribution from the temperature increase itself, considered as incoherent phonons
In the field of femtomagnetism, magnetic matter is controlled by ultrafast laser pulses; here, we sh...
By comparing the photoinduced magnetization dynamics in simple layered systems we show how light-ind...
Spintronics is postulated on the possibility to employ the magnetic degree of freedom of electrons f...
Spin-lattice coupling is one of the most prominent interactions mediating response of spin ensemble ...
Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetoc...
Dynamical strain generated upon excitation of a metallic film by a femtosecond laser pulse may becom...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
In this dissertation we set out to quantitatively investigate the dynamics of magnetic thin films. S...
The rate and pathways of relaxation of a magnetic medium to its equilibrium following excitation wit...
Resonant ultrafast excitation of infrared-active phonons is a powerful technique with which to contr...
A novel, all-optical method to excite and detect spin waves in magnetic materials is presented. By e...
In my thesis, I have strengthened the understanding of the vibrational dynamics of materials in resp...
Laser induced ultrafast demagnetization in ferromagnetic metals was discovered almost 20 years ago, ...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
In the field of femtomagnetism, magnetic matter is controlled by ultrafast laser pulses; here, we sh...
By comparing the photoinduced magnetization dynamics in simple layered systems we show how light-ind...
Spintronics is postulated on the possibility to employ the magnetic degree of freedom of electrons f...
Spin-lattice coupling is one of the most prominent interactions mediating response of spin ensemble ...
Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetoc...
Dynamical strain generated upon excitation of a metallic film by a femtosecond laser pulse may becom...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
In this dissertation we set out to quantitatively investigate the dynamics of magnetic thin films. S...
The rate and pathways of relaxation of a magnetic medium to its equilibrium following excitation wit...
Resonant ultrafast excitation of infrared-active phonons is a powerful technique with which to contr...
A novel, all-optical method to excite and detect spin waves in magnetic materials is presented. By e...
In my thesis, I have strengthened the understanding of the vibrational dynamics of materials in resp...
Laser induced ultrafast demagnetization in ferromagnetic metals was discovered almost 20 years ago, ...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
In the field of femtomagnetism, magnetic matter is controlled by ultrafast laser pulses; here, we sh...
By comparing the photoinduced magnetization dynamics in simple layered systems we show how light-ind...
Spintronics is postulated on the possibility to employ the magnetic degree of freedom of electrons f...