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Dynamics of the MnAs α/β-Striped Microstructure and of the Fe Magnetization Reversal in Fe/MnAs/GaAs(001): An Optical-Laser Pump–Free-Electron-Laser Probe Scattering Experiment
- Source :
- Photonics, Photonics, MDPI, 2017, 4 (2), pp.21. ⟨10.3390/photonics4020021⟩, Photonics, MDPI, 2017, 4 (2), pp.21. 〈10.3390/photonics4020021〉, Photonics; Volume 4; Issue 2; Pages: 21, Photonics, 2017, 4 (2), pp.21. ⟨10.3390/photonics4020021⟩, Photonics 4 (2017). doi:10.3390/photonics4020021, info:cnr-pdr/source/autori:Vidal F.; Lounis L.; Spezzani C.; Ferrari E.; Delaunay R.; Ciavardini A.; Popescu H.; Eddrief M.; Zheng Y.; Capotondi F.; Pedersoli E.; Svetina C.; Raimondi L.; Zangrando M.; Ivanov R.; Nikolov I.; Demidovich A.; Danailov M.B.; De Ninno G.; Allaria E.; Kiskinova M.; Sacchi M./titolo:Dynamics of the MnAs ?%2F?-striped microstructure and of the Fe magnetization reversal in Fe%2FMnAs%2FGaAs(001): An optical-laser pump-free-electron-laser probe scattering experiment/doi:10.3390%2Fphotonics4020021/rivista:Photonics/anno:2017/pagina_da:/pagina_a:/intervallo_pagine:/volume:4
- Publication Year :
- 2017
- Publisher :
- HAL CCSD, 2017.
-
Abstract
- It was shown recently that the Fe magnetization reversal in the Fe/MnAs/GaAs(001) epitaxial system, attained by temperature control of the regular stripe pattern of the MnAs ?- and ?-phases, can also be driven by an ultrashort optical laser pulse. In the present time-resolved scattering experiment, we address the dynamics of the MnAs ?/? self-organized stripe pattern induced by a 100 fs optical laser pulse, using as a probe the XUV radiation from the FERMI free-electron laser. We observe a loss in the diffraction intensity from the ordered ?/? stripes that occurs at two characteristic timescales in the range of ~10-12 and ~10-10 s. We associate the first intensity drop with ultrafast electron-lattice energy exchange processes within the laser-MnAs interaction volume and the second with thermal diffusion towards the MnAs/GaAs interface. With the support of model calculations, the observed dynamics are interpreted in terms of the formation of a laterally homogeneous MnAs overlayer, the thickness of which evolves in time, correlating the MnAs microstructure dynamics with the Fe magnetization response.
- Subjects :
- Diffraction
Pump-probe experiments
Materials science
02 engineering and technology
Laser pumping
01 natural sciences
Overlayer
law.invention
Magnetization
Condensed Matter::Materials Science
law
0103 physical sciences
Radiology, Nuclear Medicine and imaging
010306 general physics
Instrumentation
ComputingMilieux_MISCELLANEOUS
[PHYS]Physics [physics]
Magnetization dynamics
[ PHYS ] Physics [physics]
Condensed matter physics
Scattering
free electron laser
pump-probe experiments
magnetization dynamics
microstructure dynamics
Microstructure dynamics
021001 nanoscience & nanotechnology
Laser
Atomic and Molecular Physics, and Optics
[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]
0210 nano-technology
Free electron laser
Ultrashort pulse
Subjects
Details
- Language :
- English
- ISSN :
- 23046732
- Database :
- OpenAIRE
- Journal :
- Photonics, Photonics, MDPI, 2017, 4 (2), pp.21. ⟨10.3390/photonics4020021⟩, Photonics, MDPI, 2017, 4 (2), pp.21. 〈10.3390/photonics4020021〉, Photonics; Volume 4; Issue 2; Pages: 21, Photonics, 2017, 4 (2), pp.21. ⟨10.3390/photonics4020021⟩, Photonics 4 (2017). doi:10.3390/photonics4020021, info:cnr-pdr/source/autori:Vidal F.; Lounis L.; Spezzani C.; Ferrari E.; Delaunay R.; Ciavardini A.; Popescu H.; Eddrief M.; Zheng Y.; Capotondi F.; Pedersoli E.; Svetina C.; Raimondi L.; Zangrando M.; Ivanov R.; Nikolov I.; Demidovich A.; Danailov M.B.; De Ninno G.; Allaria E.; Kiskinova M.; Sacchi M./titolo:Dynamics of the MnAs ?%2F?-striped microstructure and of the Fe magnetization reversal in Fe%2FMnAs%2FGaAs(001): An optical-laser pump-free-electron-laser probe scattering experiment/doi:10.3390%2Fphotonics4020021/rivista:Photonics/anno:2017/pagina_da:/pagina_a:/intervallo_pagine:/volume:4
- Accession number :
- edsair.doi.dedup.....0f681d4f4825d17fb766f9878e1cfb04
- Full Text :
- https://doi.org/10.3390/photonics4020021⟩