Selected Highlights#
PAOFLOW has enabled research across a broad range of physical phenomena — from topological insulators and spintronic devices to quantum computation and optical metamaterials. The gallery below highlights representative results from published work that used PAOFLOW to drive or support key calculations.
Ultrathin SnTe films as a route towards all-in-one spintronics devices
Quantum computation of silicon electronic band structure
Hyperbolic Metamaterials with Extreme Mechanical Hardness
Topologically driven linear magnetoresistance in helimagnetic FeP
Discovery of higher-order topological insulators using the spin Hall conductivity as a topology signature
Disentangling Orbital and Valley Hall Effects in Bilayers of Transition Metal Dichalcogenides
Long-range current-induced spin accumulation in chiral crystals
Analogs of Rashba-Edelstein effect from density functional theory
Mechanically and electrically tunable Rashba-Edelstein effect in ferroelectric semiconductors, CsGeX3 (X = I, Br, Cl)