Australian scientists have developed a prototype quantum battery capable of charging faster as its size increases. However, significant technical challenges still need to be overcome before this technology can be used in practice.
Scientists have developed a method to change the magnetic polarity of materials using a focused laser without heating. This technology paves the way for the creation of adaptive electronic circuits and high-precision sensors directly on a chip.
Researchers have created an innovative 3D printing method for cemented carbides that lowers waste and costs while preserving outstanding hardness, potentially transforming the manufacturing of industrial tools.
Researchers have developed an ultrathin photonic chip for highly precise control of laser light, a crucial component for next-generation quantum computers. This technology enables the mass production of compact and energy-efficient devices, bringing the creation of scalable quantum platforms closer to reality.
Scientists have developed a method to control the rotation of miniature silicon gears using lasers and metastructures, opening up new possibilities for micromechanics and medicine. This technology enables such components to be integrated directly into chips and operated without physical contact.
Scientists at the University of Florida have developed an innovative chip that uses light instead of electricity to perform key artificial intelligence operations. This approach significantly reduces energy consumption and speeds up data processing. The technology could become an important step toward more efficient and sustainable AI systems.