In a study published in Chemistry of Materials, researchers report a quantum phase transition in single-crystal (Pr1-ₓLaₓ)4Ni3O8 fabricated with a unique high-pressure furnace that stabilizes oxides in unusual oxidation states.
In a study published in ACS Photonics, researchers found that integrating rare-earth ion molecular complexes with photonic structures could be a viable approach for the effective tuning of their optical properties.
In a study published in Cell Reports: Physical Science, researchers report control of collective ordering of an antiferromagnetic phase in nanopatterned artificial spin ices.
In a study published in Advanced Materials, researchers report that the surface of SrTiO3 (the most common material used in the field of oxide electronics) exhibits a 2D electron gas due to the presence of a TiO2 double layer.
In a study published in Physical Review Letters, researchers demonstrated the power of 3D pair distribution function analysis of single-crystal diffuse scattering by analyzing the structural phase transitions in (CaₓSr1-ₓ)3Rh4Sn13.
In a study published in Physical Review X, researchers report that a mode first identified by Tony Leggett in multi-band superconductors has a counterpart for structural phase transitions.
In a study published in Physical Review Letters, researchers demonstrate distant magnon-magnon coupling mediated by a superconducting resonator which serves as a coherent data bus for coherent magnonic interactions.
In a study published in Physical Review Letters, researchers report that novel self-organized dynamic lattices emerge in ensembles of active rollers via temporal activity modulation.