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Researchers develop framework for databasing properties of crystal defects - Vimarsana News

Researchers develop framework for databasing properties of crystal defects

Point defects (e.g. missing, extra or swapped atoms) in crystalline materials often determine the actual electronic and optical response of a given material. For example, controlled substitutions in semiconductors like silicon are the backbone of modern technology. Despite their importance, point defects are notoriously difficult to simulate and characterize, particularly across wide regions of the periodic table.

Source: phys.org
LLNL Researchers Garner Three Awards Among Top 100 Industrial Inventions - Vimarsana News

LLNL Researchers Garner Three Awards Among Top 100 Industrial Inventions

Nov. 1, 2021 -- Lawrence Livermore National Laboratory (LLNL) scientists and engineers have collected three awards among the top 100 industrial inventions

LLNL-patented power grid technology could reduce global CO2 emissions by 10 percent or more - Vimarsana News

LLNL-patented power grid technology could reduce global CO2 emissions by 10 percent or more

Engineers at Lawrence Livermore National Laboratory and their collaborators have developed a light-activated switch that, if fully deployed on the...

Diamonds are not just for jewelry anymore - Vimarsana News

Diamonds are not just for jewelry anymore

A photoconductive switch made from a synthetic, chemical vapor deposition diamond under test. When it comes to the semiconductor industry, silicon has reigned as king in the electronics field, but it is coming to the end of its physical limits. To more effectively power the electrical grid, locomotives and even electric cars, Lawrence Livermore National Laboratory (LLNL) scientists are turning to diamond as an ultra-wide bandgap semiconductor. Diamond has been shown to have superior carrier mobility, break down electric field and thermal conductivity, the most important properties to power el...