In a study published in Physical Review B, researchers report that superconductivity emerges when the spin density wave is suppressed in quasi-one-dimensional KMn6Bi5.
In a study published in Science Advances, researchers report a new method for discovering and making new crystalline materials with two or more elements.
In a study published in Physical Review Letters, researchers report that there are regimes where continuous time crystals coexist with quantum many-body scars.
In a study published in Nature Synthesis, researchers report a highly efficient method for synthesizing heterolayered oxychalcogenides by employing molten hydroxides as a key variable to control the building blocks of the heterolayers.
In a study published in the Journal of the American Chemical Society, researchers found that atomic layer deposition with saturated reactions on realistic surfaces is not adequately described by current models.
In a study published in Science Advances, researchers revealed unconventional arrested-motility states in ensembles of active discoidal particles powered by induced-charge electrophoresis.
In a study published in Advanced Materials, researchers imaged for the first time the conduction channel formed in a memristor using an X-ray microscope at the Advanced Photon Source.
In a study published in Communications Physics, researchers reveal the presence of three types of magnetic order in an iron superconductor (LaFeAs1-ₓPₓO).
In a study published in Proceedings of the National Academy of Sciences, researchers report that machine learning can reveal all the critical features within X-ray scattering “big data” required to determine the origin of structural correlations.
In a study published in Proceedings of the National Academy of Sciences, researchers reveal new transition pathways during an ultrafast phase transition of FeRh, which are fundamentally different from quasi-equilibrium transitions.