Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetocrystalline anisotropy and induces the magnetization precession. We consider two main contributions to these processes: an effect of noncoherent phonons, which modifies the temperature dependent parameters of the magnetocrystalline anisotropy and coherent phonons in the form of a strain contributing via inverse magnetostriction. Contrary to earlier experiments with high-symmetry ferromagnetic structures, where these mechanisms could not be separated, we study the magnetization response to femtosecond optical pulses in the low-symmetry magnetostrictive galfenol film so that it is possible to separate the coherent and noncoherent phonon contribu...
Ultrafast laser-induced dynamics in a ferrimagnetic gadolinium iron cobalt (Gd/FeCo) multilayer with...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Imagine being able to write magnetic information efficiently at THz data rates, creating such conten...
Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetoc...
Spin-lattice coupling is one of the most prominent interactions mediating response of spin ensemble ...
Dynamical strain generated upon excitation of a metallic film by a femtosecond laser pulse may becom...
Laser induced ultrafast demagnetization in ferromagnetic metals was discovered almost 20 years ago, ...
The rate and pathways of relaxation of a magnetic medium to its equilibrium following excitation wit...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
Magnetization precession induced by linearly polarized optical excitation in ferromagnetic (Ga,Mn)As...
During the past few years, a wealth of new data on laser-induced ultra-fast magnetization dynamics i...
Magnetic phenomena are ubiquitous in nature and indispensable for modern science and technology, but...
International audienceWe review the phenomenology of light-induced ultrafast magnetization dynamics,...
Ultrafast laser-induced dynamics in a ferrimagnetic gadolinium iron cobalt (Gd/FeCo) multilayer with...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Imagine being able to write magnetic information efficiently at THz data rates, creating such conten...
Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetoc...
Spin-lattice coupling is one of the most prominent interactions mediating response of spin ensemble ...
Dynamical strain generated upon excitation of a metallic film by a femtosecond laser pulse may becom...
Laser induced ultrafast demagnetization in ferromagnetic metals was discovered almost 20 years ago, ...
The rate and pathways of relaxation of a magnetic medium to its equilibrium following excitation wit...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
Magnetization precession induced by linearly polarized optical excitation in ferromagnetic (Ga,Mn)As...
During the past few years, a wealth of new data on laser-induced ultra-fast magnetization dynamics i...
Magnetic phenomena are ubiquitous in nature and indispensable for modern science and technology, but...
International audienceWe review the phenomenology of light-induced ultrafast magnetization dynamics,...
Ultrafast laser-induced dynamics in a ferrimagnetic gadolinium iron cobalt (Gd/FeCo) multilayer with...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Imagine being able to write magnetic information efficiently at THz data rates, creating such conten...