In lab, ultrathin magnesium cuts p-GaN contact resistance
Nagoya University treated p-type gallium nitride with magnesium at 600°C for five minutes.
Chips, lithography, efficiency, quantum: more computing for fewer watts, and what we will do with it.
Computing is the hidden resource behind everything else: without efficient chips there is no artificial intelligence, no autonomous vehicle, no smart grid. The section follows process nodes shrinking — 2 nanometres and beyond — architectures doing more operations per watt, memory, interconnects, and quantum computing whenever it produces verifiable results rather than promises.
We read the roadmaps of TSMC, Samsung, Intel and the Chinese foundries, the architecture papers, the independent benchmarks. The angle never changes: efficiency — compute per unit of energy — matters more than raw performance, because it decides what will actually run, from the data centre to the phone. Every article gives its orders of magnitude and cites its sources.
Nagoya University treated p-type gallium nitride with magnesium at 600°C for five minutes.
The BigSky SF-2U870 is expected to support Ubuntu 26.04 and RHEL 10 out of the box.
The UCLA result was obtained in a lab using boron arsenide and a nanoscale gold probe.
The upcoming mainframe processor is set to offer eleven cores and at least 5.7 GHz.
New funding lifts Starcloud's total raised to $450M and its valuation to $2.3B.
Ten of the sixteen qubits passed entanglement-witness measurements.
The platform supports repositories, code browsing, editing and pull requests.
CEO Liu Qingfeng says 90% to 95% of deployments do not need million-token context.
NASA’s modernized propulsion code completed a 108,500-case sweep in approximately 1.11 seconds.
Vienna researchers found the most stable site for thorium-229 inside a calcium fluoride crystal.
The Zhengzhou node is already supporting more than 300 workloads across twenty-six domains.
The film held a k-value of 1.35 from 0.8 to 2.7 nanometers.
The Optical Jumper was launched in March 2026 with Shanghai INESA, Biren Technology and ZTE.
Aratas’ G3VH comes in 1,800 V and 3,300 V models for high-voltage switching.
Caltech researchers changed a light beam's angle in 74 femtoseconds using light as the control signal.
Engineers mapped five indoor environments and tailored tile layouts to their walls, hardware and likely user paths.
Six large-model training workloads each exceeded 98% of NVIDIA reference performance.
IBM joined two modules into one cryogenic environment, a demonstration rather than a deployed quantum computer.