An assist layer with in-plane magnetization helps the free layer switch at lower current density, improving STT-MRAM reliability.
A BaTiO3-ferrite nanocomposite uses rare-earth substitution to strengthen magnetoelectric behavior while keeping dielectric loss low across frequencies.
Axial end notches or anti-notches impede domain wall nucleation in soft magnetic nanowires, raising switching field control range.
Surface-bonded chiral molecules on perovskite nanocrystals raise CPL g-factor and photoluminescence efficiency for optoelectronic use.
Calcination with molybdenum and a shape control agent forms plate-shaped iron oxide particles with high aspect ratio, small size, and strong dispersibility.
Lithographic spin-on polymer layers with magnetic nanoparticles replace manual cryogenic filter assembly, enabling compact wafer-level integration.
Separating the MRAM free layer into magnetic pieces cuts write current and voltage while limiting tailing bits and preserving storage capacity.
Irregular magnetite particles in a non-conductive binder create stable charge storage and rapid, reversible resistance changes for repeatable VOC sensing.
Alternating thin iron-boron and cobalt-iron layers cut damping and resistance-area product while preserving magnetoresistance.
Single-mode EM resonance enables rapid, uniform thawing of cryopreserved tissue while limiting ice recrystallization and thermal fracture.
Magnetophoresis between ferromagnetic pads forms room-temperature micro magnets with MEMS-compatible processing and adjustable size.