Ferroelectric and ferroelastic domain walls are 2D topological defects with thicknesses approaching the unit cell level. When this spatial confinement is combined with observations …
H Sun, M Huo, X Hu, J Li, Z Liu, Y Han, L Tang, Z Mao… - Nature, 2023 - nature.com
Although high-transition-temperature (high-T c) superconductivity in cuprates has been known for more than three decades, the underlying mechanism remains unknown …
Z Luo, X Hu, M Wang, W Wú, DX Yao - Physical review letters, 2023 - APS
The newly discovered Ruddlesden-Popper bilayer La 3 Ni 2 O 7 reaches a remarkable superconducting transition temperature T c≈ 80 K under a pressure of above 14 GPa. Here …
Since the discovery of high-temperature superconductivity in copper oxide materials, there have been sustained efforts to both understand the origins of this phase and discover new …
The occurrence of superconductivity in proximity to various strongly correlated phases of matter has drawn extensive focus on their normal state properties, to develop an …
Motivated by the recently discovered high-T c superconductor La3Ni2O7, we comprehensively study this system using density functional theory and random phase …
YB Liu, JW Mei, F Ye, WQ Chen, F Yang - Physical Review Letters, 2023 - APS
Recently, the bilayer perovskite nickelate La 3 Ni 2 O 7 has been reported to show evidence of high-temperature superconductivity (SC) under a moderate pressure of about 14 GPa. To …
The occurrence of unconventional superconductivity in cuprates has long motivated the search for manifestations in other layered transition metal oxides. Recently …
Recently, superconductivity with a T c up to 78 K has been reported in bulk samples of the bilayer nickelate La 3 Ni 2 O 7 at pressures above 14 GPa. Important theoretical tasks are …