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Nowadays, classic models assume that diamonds form under very high pressure and temperatures, properties found only in the upper part of Earth's mantle (in a depth of 150km/93miles).
Previous first-principle- and molecular dynamics (MD -based studies [20–23] have characterized MD -based mechanicstudies, zero or near-zero temperatures) properties of isolated carbyne chains (e.g., in a vacuum).
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This provides an advantage for simulating the low-temperature properties of frustrated spin systems.
Siddharthan, R. et al. Ising pyrochlore magnets: low-temperature properties, ice rules, and beyond.
Kornev, I. A., Lisenkov, S., Haumont, R., Dkhil, B. & Bellaiche, L. Finite-temperature properties of multiferroic BiFeO3.
Senkov, O. N., Scott, J. M., Senkova, S. V., Miracle, D. B. & Woodward, C. F. Microstructure and room temperature properties of a high-entropy TaNbHfZrTi alloy.
The implications for high-temperature properties are discussed.
The theory has now reached a point where one can compute gaps for all observed fractions, finite temperature properties like polarization and relaxation rate.
New Co-based alloys containing a L12 reinforcement phase display exceptional high-temperature properties.
Design approaches for further enhancement of ultrahigh temperature properties of oxide/non-oxide composites are discussed.
Elevated temperature properties and implications for codification of the alloys will be described.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com