Scientists revise diamond melting point after new study
Researchers have
discovered that diamonds behave differently under extreme conditions than
previously believed, changing the broader understanding of their melting point.
The findings come from
a study published in Nature Physics on 13 August that
reports previous measurements of diamond's melting temperature were more than 1,300°F (700°C) too high.
Researchers at
Lawrence Livermore National Laboratory in California used high-powered lasers
to compress tiny samples of synthetic diamond until melting occurred. Previous
experiments had reported much higher melting points than theoretical
predictions, leaving a 20-year gap in understanding.
“It's
odd to think of diamond, the hardest natural material on Earth, melting — but
melt it does when blasted with extremely powerful lasers under the right
conditions,” writes Damien Pine for LiveScience.
“Understanding
how diamond responds to shock waves from lasers is an important part of
developing nuclear fusion, the process that powers stars. Nuclear fusion is
also a potential energy source for the future, so researchers have put a lot of
effort into developing models that describe and predict how diamond behaves.”
The team also found
that at pressures between 660 and 1,060
gigapascals and temperatures near 12,140°F (6,727°C),
solid diamond can coexist with liquid carbon rather than converting to another
carbon form. As pressure increases, more diamond melts into liquid carbon.
These findings could
help improve nuclear fusion research and the scientific understanding of Uranus
and Neptune, where extreme conditions are believed to form diamonds deep within
these planets.
This report follows a
paper by researchers at the University of Hong Kong published in Science
Advances, showing that diamond membranes generate measurable electricity when
bent.
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