Perspective: Ultrafast magnetism and THz spintronics
arXiv:1606.08725 · doi:10.1063/1.4958846
Abstract
This year the discovery of femtosecond demagnetization by laser pulses is 20 years old. For the first time this milestone work by Bigot and coworkers gave insight in a very direct way into the time scales of microscopic interactions that connect the spin and electron system. While intense discussions in the field were fueled by the complexity of the processes in the past, it now became evident that it is a puzzle of many different parts. Rather than giving an overview that has been presented in previous reviews on ultrafast processes in ferromagnets, this perspective will show that with our current depth of knowledge the first real applications are on their way: THz spintronics and all-optical spin manipulation are becoming more and more feasible. The aim of this perspective is to point out where we can connect the different puzzle pieces of understanding gathered over 20 years to develop novel applications. based on many observations in a large number of experiments. Differences in the theoretical models arise from the localized and delocalized nature of ferromagnetism. Transport effects are intrinsically non-local in spintronic devices and at interfaces. We review the need for multiscale modeling to address processes starting from electronic excitation of the spin system on the picometer length scale and sub-femtosecond time scale, to spin wave generation, and towards the modeling of ultrafast phase transitions that altogether determine the response time of the ferromagnetic system. Today, our current understanding gives rise to the first real applications of ultrafast spin physics for ultrafast magnetism control: THz spintronic devices. This makes the field of ultrafast spin-dynamics an emerging topic open for many researchers right now.
24 pages, 11 figures, review
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Cited by in corpus (19)
- Spintronic Sources of Ultrashort Terahertz Electromagnetic Pulses
- Terahertz-Light Driven Coupling of Antiferromagnetic Spins to Lattice
- Low damping and microstructural perfection of sub-40nm-thin yttrium iron garnet films grown by liquid phase epitaxy
- Principles of spintronic THz emitters
- Magnon-polarons in van der Waals antiferromagnet FePS3
- Laser induced THz emission from femtosecond photocurrents in Co/ZnO/Pt and Co/Cu/Pt multilayers
- Frequency-independent terahertz anomalous Hall effect in DyCo, CoFe and GdFe thin films from DC to 40 THz
- Broadband magnetoelastic coupling in magphonic crystals for high-frequency nanoscale spin wave generation
- Simulation of Hot-Carrier Dynamics and Terahertz Emission in Laser-Excited Metallic Bilayers
- Magnon-polarons in cubic collinear Antiferromagnets
- Ultrafast hot-electron induced quenching of Tb4f magnetic order
- Excitation of high-frequency magnon modes in magnetoelastic films by short strain pulses
- Spin-orbit torque-mediated spin-wave excitation as an alternative paradigm for femtomagnetism
- Manifestation of intra-atomic 5d6s-4f exchange coupling in photoexcited gadolinium
- Precession dynamics of a small magnet with non-Markovian damping: Theoretical proposal for an experiment to determine the correlation time
- Electric-Field-Induced Antiferromagnetic Insulating State in a Metallic Ferromagnet
- Analysis in k-space of Magnetization Dynamics Driven by Strong Terahertz Fields
- Femtosecond Photocurrents at the Pt/FeRh Interface
- Sub-pico-liter magneto-optical cavities