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Resonant optical control of magnetism on ultrashort timescales
J.R. Hortensius
QN/Caviglia Lab
Research output
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Thesis
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Dissertation (TU Delft)
365
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Dive into the research topics of 'Resonant optical control of magnetism on ultrashort timescales'. Together they form a unique fingerprint.
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INIS
control
100%
magnetism
100%
excitation
100%
dynamics
38%
phonons
30%
resonance
30%
interactions
30%
pulses
30%
spin
30%
wave packets
30%
lattice vibrations
30%
spin waves
23%
probes
23%
symmetry
15%
ground states
15%
anisotropy
15%
solids
15%
strains
15%
time resolution
15%
emission
7%
electrons
7%
surfaces
7%
oxygen
7%
wavelengths
7%
rotation
7%
nickel
7%
energy
7%
density functional method
7%
pumps
7%
coupling
7%
exchange interactions
7%
kerr effect
7%
antiferromagnetism
7%
magnetic properties
7%
nonlinear problems
7%
degrees of freedom
7%
confinement
7%
van der waals forces
7%
charges
7%
photons
7%
Material Science
Ultrashort Pulse
100%
Magnetism
100%
Lattice Vibration
100%
Structural Dynamics
50%
Materials
50%
Solid
50%
Materials Property
25%
Magnetic Property
25%
Nickel
25%
Density
25%
Insulating Material
25%
Surface
25%
Anisotropy
25%
Selective Excitation
25%
Keyphrases
Change Material
25%
Selective Excitation
25%
Exciton-phonon Coupling
25%
Anisotropic Strain
25%
Control Materials
25%
Coherent THz
25%