Home The Latest News The Latest News Read the latest news about our breakthrough discoveries, get a behind-the-scenes looks at our researchers at work, and join our scientists as they redefine the pursuit of what's possible. Search search Search Clear All Research Area Astronomy & Astrophysics Earth Science Global Ecology Genetics & Developmental Biology Matter at Extreme States Planetary Science Plant Science Type Women's History Organizational News Science News Campus News Trustee News Awards Feature Story Q&A Event Highlights Spotlight Year Book #Carnegie125 Division Biosphere Sciences & Engineering Embryology Global Ecology Plant Biology Carnegie Science Earth & Planets Laboratory Observatories Sort by Date Ascending Date Descending Filter By: Clear All Type Women's History Organizational News Science News Campus News Trustee News Awards Feature Story Q&A Event Highlights Spotlight Year Book #Carnegie125 Research Area Astronomy & Astrophysics Earth Science Global Ecology Genetics & Developmental Biology Matter at Extreme States Planetary Science Plant Science Division Biosphere Sciences & Engineering Embryology Global Ecology Plant Biology Carnegie Science Earth & Planets Laboratory Observatories Sort by Date Ascending Date Descending Filter results 42 results found for: March 30, 2022 Campus News More than 110 scientists attended the 33rd Annual Fundamental Physics of Ferroelectric and Related Materials March 02, 2022 Discovered: An Easier Way To Create "Flexible Diamonds" Working with magnesium germanate, Mg2GeO4, analogous to one of the mantle’s most abundant silicate minerals, the team was able to glean information about the potential mineralogy of super-Earths and other large, rocky exoplanets. Under about 2 million times normal atmospheric pressure a new phase emerged with a distinct crystalline structure that involves one germanium bonded with eight oxygens. The new eight-coordinated, intrinsically discorded mineral is expected to strongly affect the internal temperature and dynamics of these planets. Illustration is courtesy of Rajkrishna Dutta. March 01, 2022 What’s Happening In The Depths Of Distant Worlds? February 14, 2022 Campus News #ScienceValentines October 18, 2021 Feature Story Three ways we’re exploring extreme materials at the Earth and Planets Laboratory June 03, 2021 New form of silicon could enable next-gen electronic and energy devices January 10, 2020 “Superdiamond” carbon-boron cages can trap and tap into different properties July 02, 2018 Eric Isaacs Named 11th President of the Carnegie Institution for Science March 13, 2017 Solid metal has “structural memory” of its liquid state January 23, 2017 Melting Solid Below the Freezing Point Pagination Previous page chevron_left … Page 2 Current page 3 Page 4 … Next page chevron_right
March 30, 2022 Campus News More than 110 scientists attended the 33rd Annual Fundamental Physics of Ferroelectric and Related Materials
Working with magnesium germanate, Mg2GeO4, analogous to one of the mantle’s most abundant silicate minerals, the team was able to glean information about the potential mineralogy of super-Earths and other large, rocky exoplanets. Under about 2 million times normal atmospheric pressure a new phase emerged with a distinct crystalline structure that involves one germanium bonded with eight oxygens. The new eight-coordinated, intrinsically discorded mineral is expected to strongly affect the internal temperature and dynamics of these planets. Illustration is courtesy of Rajkrishna Dutta. March 01, 2022 What’s Happening In The Depths Of Distant Worlds?
October 18, 2021 Feature Story Three ways we’re exploring extreme materials at the Earth and Planets Laboratory