In a study published in Nature Physics, researchers pioneered, with the worldwide advent of new coherent X-ray sources, the experimental and analysis methods will enable broad application of XPCS to observe atomic-scale processes on surfaces.
In a study published in Scientific Reports, researchers determined the spatial distribution of the defects optimizing the critical current and found that it is in general non-uniform and asymmetric.
In a study published in the Journal of the American Chemical Society, researchers discovered the use of metal oxide chemical precursors can open reaction paths to new low-dimensional compounds.
In a study published in Nano Letters, researchers experimentally show that excitations or defects carrying magnetic charge in artificial spin ices introduce a topological defect in incident coherent electron waves.
In a study published in Nature Communications, researchers demonstrate the potential of magnetic roller vortices to effectively capture and transport inert particles at the microscale.
In a study published in Scientific Reports, researchers demonstrated that in two-dimensions the emergence of an instability is a hallmark of Berezinskii-Kosterlitz-Thouless transition they detected by transport measurements of titanium nitride films.
In a study published in ACS Nano, researchers demonstrate that annihilation pathways depend strongly on both the separation between dislocations and their relative position with respect to the substrate guiding stripes used to direct the assembly.
In a study published in Nano Letters, researchers found the penetrating nature of X-ray radiation, together with the relaxed constraints of multiangle Bragg projection ptychography, will enable the in operando imaging of nanowire devices.
In a study published in Science, researchers indicated that the agreement between experiment and theory shows that they have a robust first-principles understanding of the temperature dependence of f-electron coherence.
In a study published in Nature Communications, researchers attributed the anomalous Hall effect to either formation of a complex magnetic texture or the combined effect of the small intrinsic moment on the electronic band structure.