Can New High-Pressure Secrets of Osmium Be Applied to Liquid Metallic Hydrogen?

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SUMMARY

The discussion centers on the application of new high-pressure findings related to osmium to the study of liquid metallic hydrogen. Researchers have achieved pressures between 400 GPa and 770 GPa at room temperature, which raises questions about the feasibility of applying similar techniques to hydrogen. The primary challenge identified is the difficulty in confining enough hydrogen to observe its properties at these extreme conditions.

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400 GPa to 770 GPa at room temperature.
There are difficulties confining sufficient hydrogen to see at room T.
 

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