DOE OSTI · 1855572
Atomically Precise Manufacturing for 2D-Designed Materials
Abstract
The primary purpose of this program was to develop atomically precise fabrication techniques for semiconductor systems that places dopant atoms in a single buried (100) atomic plane in silicon with near atomic precision to create unprecedented structures that can be used for a wide variety of quantum experiments, devices, and potentially designer quantum materials. The potential impacts on reducing industrial energy use are many: 1) optimized and more energy efficient industrial processes via more efficient computational approaches, 2) dramatically improved materials for industrial use including higher critical-temperature superconductors eliminating losses in electrical transmission, 3) the better understanding of quantum chemistry via Analog Quantum Simulation(AQS) in the near term and universal quantum computing in the longer term that will lead to new industrial processes with smaller or zero production of greenhouse gases.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Owen, James H. G., Kirk, Wiley, Silver, Richard, Bryant, Garnett, Wyrick, Jonathan. 2022-01-28. Atomically Precise Manufacturing for 2D-Designed Materials. https://doi.org/10.2172/1855572
Cite the original work for its findings. Save a collection to share your selection of sources.