To gain control over magnetic order on ultrafast time scales, a fundamental understanding of the way electron spins interact with the surrounding crystal lattice is required. However, measurement and analysis even of basic collective processes such as spin-phonon equilibration have remained challenging. Here, we directly probe the flow of energy and angular momentum in the model insulating ferrimagnet yttrium iron garnet. After ultrafast resonant lattice excitation, we observe that magnetic order reduces on distinct time scales of 1 ps and 100 ns. Temperature-dependent measurements, a spin-coupling analysis, and simulations show that the two dynamics directly reflect two stages of spin-lattice equilibration. On the 1-ps scale, spins and pho...
We report the observation of the spin Peltier effect (SPE) in the ferrimagnetic insulator yttrium ir...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Restricted AccessA new mechanism for magnon-phonon relaxation process in ferrimagnetic insulators (e...
In spintronic materials, control and transport of magnetic order require a fundamental understanding...
To gain control over magnetic order on ultrafast time scales, a fundamental understanding of the way...
A new mechanism is proposed for relaxation processes in ferrimagnetic insulators (assumed to be ioni...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
The magnetic insulator yttrium iron garnet can be grown with near perfection and is therefore and id...
The ultrastrong coupling of (quasi-)particles has gained considerable attention due to its applicati...
The magnetic insulator yttrium iron garnet can be grown with near perfection and is therefore and id...
Using a combination of first-principles and magnetization-dynamics calculations, we study the effect...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
We experimentally study the spin dynamics in a gadolinium iron garnet single crystal using broadband...
Resonant ultrafast excitation of infrared-active phonons is a powerful technique with which to contr...
We report the observation of the spin Peltier effect (SPE) in the ferrimagnetic insulator yttrium ir...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Restricted AccessA new mechanism for magnon-phonon relaxation process in ferrimagnetic insulators (e...
In spintronic materials, control and transport of magnetic order require a fundamental understanding...
To gain control over magnetic order on ultrafast time scales, a fundamental understanding of the way...
A new mechanism is proposed for relaxation processes in ferrimagnetic insulators (assumed to be ioni...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
The magnetic insulator yttrium iron garnet can be grown with near perfection and is therefore and id...
The ultrastrong coupling of (quasi-)particles has gained considerable attention due to its applicati...
The magnetic insulator yttrium iron garnet can be grown with near perfection and is therefore and id...
Using a combination of first-principles and magnetization-dynamics calculations, we study the effect...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
We experimentally study the spin dynamics in a gadolinium iron garnet single crystal using broadband...
Resonant ultrafast excitation of infrared-active phonons is a powerful technique with which to contr...
We report the observation of the spin Peltier effect (SPE) in the ferrimagnetic insulator yttrium ir...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Restricted AccessA new mechanism for magnon-phonon relaxation process in ferrimagnetic insulators (e...