Researchers reveal how electronic patterns emerge and can be controlled in the graphene-like quantum material cerium ...
Physicists have discovered a surprisingly simple way to reproduce one of the most fascinating models in modern physics - ...
Researchers have succeeded in detecting exceptionally robust electrical transport in a topological insulator. This could lead ...
Water-surface flows drive a tiny rotor without chemicals or fields, twisting ultrafine fibers into bundles for cables, ...
A programmable terahertz chip combines penetrative sensing, nonvolatile optical encoding, and hardware preprocessing, classifying vehicle motion with 92.3% accuracy and recovering encoded information ...
Liquid-coupled microscopic particles can perform reservoir computing, predict chaotic signals and detect subtle anomalies with low hardware demands.
Generative AI creates realistic synthetic spectra, helping limited training data improve reliable detection of antibiotic residues in water.
A metasurface-based optical method tracks single proteins changing shape in liquid, revealing folding pathways and responses ...
A purified insect olfactory receptor on graphene converts molecular binding into electrical signals and retains enough ...
Gaining new insights into the properties and targeted modification of semiconductor surfaces more easily and quickly than ...
Planar light-responsive nanofluidic memristors combine ionic memory, programmable weights, logic, and in-sensor processing in ...
Researchers have created a device that enables them to control the flow of electrons through a semiconductor using only laser ...
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