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Twisted materials—known as moiré structures—have revolutionized modern physics, emerging as today's "alchemy" by creating ...
Researchers at the University of California, Riverside, have uncovered how to manipulate electrical flow through crystalline ...
Researchers have unveiled a silicon-free microprocessor technology that could be the future of microprocessors and have global implications.
Silicon photonics revolutionizes data transmission with faster, more efficient lasers integrated on silicon wafers.
Discover the possibilities of twisted bilayer graphene as a replacement for silicon in integrated circuits and it's potential.
Ehime University researchers investigate valence electron behavior in antiferromagnetic crystals, shedding light on quantum spin liquids and superconductivity.
In their study, the scientists said spin qubits are particularly well-suited for integration with silicon because silicon provides a stable environment for electron spins.
We are continuously improving the performance of our field emission electron sources. In this work a geometrically optimized design of electron sources with silicon nanowire field emitters on pillars ...
Electron beam lithography is a technique for creating high-resolution patterns on a semiconductor substrate by directing a beam of electrons ...
Silicon photonics can enhance lidar systems by enabling compact and cost-effective solutions for automotive safety systems, autonomous vehicles, and environmental monitoring. Silicon photonics also is ...
Silicon-rich anode materials have been used in batteries for niche applications like BAE Systems' high-altitude drone, but the materials' hefty cost has kept them out of car batteries.
Abstract: Arrangement selected crystallization of different thickness from 100nm to 350nm of amorphous silicon thin films on glass were prepared by 248nm wavelength UV excimer laser. A cleverly ...