Resonant ultrafast excitation of infrared-active phonons is a powerful technique with which to control the electronic properties of materials that leads to remarkable phenomena such as the light-induced enhancement of superconductivity1,2, switching of ferroelectric polarization3,4 and ultrafast insulator-to-metal transitions5. Here, we show that light-driven phonons can be utilized to coherently manipulate macroscopic magnetic states. Intense mid-infrared electric field pulses tuned to resonance with a phonon mode of the archetypical antiferromagnet DyFeO3 induce ultrafast and long-living changes of the fundamental exchange interaction between rare-earth orbitals and transition metal spins. Non-thermal lattice control of the magnetic excha...
In spintronic materials, control and transport of magnetic order require a fundamental understanding...
In my thesis, I have strengthened the understanding of the vibrational dynamics of materials in resp...
The microscopic origin of ultrafast modification of the ratio between the symmetric (J) and antisymm...
Resonant ultrafast excitation of infrared-active phonons is a powerful technique with which to contr...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
Using a combination of first-principles and magnetization-dynamics calculations, we study the effect...
In the field of femtomagnetism, magnetic matter is controlled by ultrafast laser pulses; here, we sh...
Light fields at terahertz and mid-infrared frequencies allow for the direct excitation of collective...
A theory describing how ferroic properties can emerge transiently in the ultra-fast regime by breaki...
Driving phase changes by selective optical excitation of specific vibrational modes in molecular and...
Identifying efficient pathways to control and modify the order parameter of a macroscopic phase in m...
To gain control over magnetic order on ultrafast time scales, a fundamental understanding of the way...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Light enables ultrafast, direct and nonthermal control of the exchange and Dzyaloshinskii-Moriya int...
Light enables the ultrafast, direct, and nonthermal control of the exchange and Dzyaloshinskii-Moriy...
In spintronic materials, control and transport of magnetic order require a fundamental understanding...
In my thesis, I have strengthened the understanding of the vibrational dynamics of materials in resp...
The microscopic origin of ultrafast modification of the ratio between the symmetric (J) and antisymm...
Resonant ultrafast excitation of infrared-active phonons is a powerful technique with which to contr...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
Using a combination of first-principles and magnetization-dynamics calculations, we study the effect...
In the field of femtomagnetism, magnetic matter is controlled by ultrafast laser pulses; here, we sh...
Light fields at terahertz and mid-infrared frequencies allow for the direct excitation of collective...
A theory describing how ferroic properties can emerge transiently in the ultra-fast regime by breaki...
Driving phase changes by selective optical excitation of specific vibrational modes in molecular and...
Identifying efficient pathways to control and modify the order parameter of a macroscopic phase in m...
To gain control over magnetic order on ultrafast time scales, a fundamental understanding of the way...
The developing field of strain-induced magnetization dynamics offers a promising path toward efficie...
Light enables ultrafast, direct and nonthermal control of the exchange and Dzyaloshinskii-Moriya int...
Light enables the ultrafast, direct, and nonthermal control of the exchange and Dzyaloshinskii-Moriy...
In spintronic materials, control and transport of magnetic order require a fundamental understanding...
In my thesis, I have strengthened the understanding of the vibrational dynamics of materials in resp...
The microscopic origin of ultrafast modification of the ratio between the symmetric (J) and antisymm...