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Frontier in the diamond anvil cell techniques for ultrahigh pressure generation.

Yingji DingYidan SunShuqing JiangXiaoli HuangTian Cui
Published in: Journal of physics. Condensed matter : an Institute of Physics journal (2023)
The diamond anvil cell (DAC) has become a principal tool for high-pressure research in muti-fields such as physics, earth, and planetary sciences, because of its ability to the realization of megabar pressures and thousands of degrees. Nevertheless, the strain on the culet of single crystal diamond (SCD) at high loads leads to the conventional DAC having a 400 GPa limit. To date, based on the conventional DAC, several new designs were innovatively proposed such as the double stage DAC (ds-DAC) and toroidal DAC (T-DAC). They are both capable to reach pressures above 600 GPa, and even static pressures of more than 1.0 TPa are achieved using ds-DAC. All these progress promote research to explore the new structures and unique properties of matters in a remarkable extended pressure range. Here, the characteristics and experimental methods of these interesting and important ultrahigh pressure technologies are reviewed, the strengths and limitations are summarized, and an outlook on the development of ultrahigh pressure technology is also provided. These exciting results will further stimulate the breakthrough discoveries for ultrahigh pressure studies.&#xD.
Keyphrases
  • single cell
  • high resolution
  • mass spectrometry