A universal system for decoding any type of data sent across a network
New chip eliminates the need for specific decoding hardware, could boost efficiency of gaming systems, 5G networks, the internet of things, and more.
New chip eliminates the need for specific decoding hardware, could boost efficiency of gaming systems, 5G networks, the internet of things, and more.
Atomically thin materials are a promising alternative to silicon-based transistors; now researchers can connect them more efficiently to other chip elements.
MIT researchers develop compact on-chip device for detecting electric-field waveforms with attosecond time resolution.
The advance could improve energy efficiency of data centers and lighten the load for electronics-rich vehicles.
The advance could cut production costs and reduce the size of microelectronics for sensing and communication.
Quantum computers could usher in a golden age of computing power, solving problems intractable on today’s machines.
Once deemed suitable only for high-speed communication systems, an alloy called InGaAs might one day rival silicon in high-performance computing.
Fiber optics built into a chip can deliver all the laser light needed to control ions for quantum computing and sensing.
Scientists from the Search for Extra-Terrestrial Genomes instrument team develop method to detect the tiniest traces of life on other planetary bodies.
Growing material directly onto substrates and recycling chip patterns should enable faster, simpler manufacturing.
Technique would allow addition of optical communication components to existing chips with little modification of their designs.
Light-based devices could be used as biomedical sensors or as flexible connectors for electronics.
System for generating ad hoc “cache hierarchies” increases processing speed while reducing energy consumption.
System enables large speedups — as much as 88-fold — on common parallel-computing algorithms.
Self-assembly technique could lead to long-awaited, simple method for making smaller microchip patterns.