Searcharxiv⌕ Search

arXiv subjects

Maksim V. Sapozhnikov

Publications and source records attributed to Maksim V. Sapozhnikov.

3 recordsLinked to original sources

Enhancing the magnetism and giant anomalous Hall effect in thin Fe-Al films via B2 nanophase growth

The properties of alloys that undergo to chemical order-disorder transformations depend heavily on the degree of ordering in the crystal lattice. In the literature, it is well established that the ordering in a magnetic alloy such as Fe-rich Fe_xAl_1-x (x>0.5) leads to reducing its magnetization and even to a transition from the ferromagnetic (FM) to paramagnetic (PM) state at x<0.7. Studying the ordering kinetics in thin (50 nm) Fe_xAl_1-x films with a non-stoichiometric composition (0.5 600 °C, the ordering process is accompanied by an increase in magnetization and related properties. For example, we find the further enhancement of the giant anomalous Hall (AH) effect found recently in Fe_xAl_1-x alloys. Based on both experimental data and theoretical modeling, we argue that these properties are enhanced due to the nucleation and growth of the B2-Fe_0.5Al_0.5 phase. Growing B2 nanocrystals enable segregation and clustering of excess Fe in the alloy. It has been revealed that the PM phase, which is formed in the aged samples and contains Fe-enriched superparamagnetic clusters, contributes to the AH resistivity even more than the FM phase in the as-grown sample. Our findings open a route for improving the properties of functional alloys.

cond-mat.mtrl-sci↗

Magnetic Field-Controlled THz Modulation in Uniaxial Anisotropic Spin-Valves Emitters

Uniaxial spintronic heterostructures constitute compact THz emitters under femtosecond optical excitation, with emission amplitude and polarization governed by the applied magnetic field is presented. We demonstrate here efficient magnetically tunable THz amplitude control in ultrathin, exchange-biased Co/Pt/Co/IrMn spin valve. Terahertz spintronic magnetometry resolves reversible switching between parallel and antiparallel magnetization states and correlates the high- and low-emission regimes with constructive and destructive interference of charge transients generated by the inverse spin Hall effect in the Pt spacer. A residual low-emission signal is traced to spin-to-charge conversion in IrMn. Phase inversion under front- versus back-side excitation confirms the ISHE origin of the emission, while a macrospin Landau-Lifshitz-Gilbert model reproduces the field dependence of its amplitude and separates layer-specific contributions. Together, these results define a wafer-compatible spin valve device architecture that enables efficient, low-field THz amplitude control.

cond-mat.mtrl-sci↗

Effective Magnetic Switching of THz Signal in Planar Structured Spintronic Emitters

We demonstrate an efficient swithcable spintronic THz emission from a Co(2nm)/Pt(2nm) bilayer split into a grating of micro- or nanostripes in applied external magnetic field of the order of 10mT. The THz signal is effectively emitted if the samples are magnetized perpendicular to the stripes direction and decreases upon a 90-degree rotation of a sample. The maximal 27-fold ratio of amplitude change is achieved for the sample with a $2 μm$ width of stripes. For the samples with easy magnetization axis directed perpendicular to stripes the THz signal is linearly polarized in the direction of the stripes and abruptly switches during the sample re-magnetization process. If the easy axis is along the stripes the THz source is almost switched off in a zero magnetic field.

physics.app-ph↗