DOE OSTI · 3727562
Anomalous lattice expansion of bcc Ta in helium-loaded diamond anvil cells
Abstract
Anomalous lattice expansion of bcc Ta is observed in helium-loaded diamond anvil cell (DAC) experiments near 6 GPa and above 400 K, while co-loaded W, Mo, and Au exhibit normal thermal expansion. The Ta volume expansion increases with temperature, reaching ~14% near 650 K before plateauing, and is largely retained after recovery to ambient conditions. Time-resolved measurements at 500 K reveal progressive expansion over several hours, consistent with gradual, thermally activated He incorporation. The largely retained expansion during subsequent cooling and holding at 400 K indicates that the incorporated He is predominantly kinetically trapped. The data reveal two distinct regimes: below ~550 K, modest and spatially uniform expansion consistent with interstitial He trapping at isolated, randomly distributed vacancies; above ~550 K, He-vacancy cluster growth producing dramatically larger expansion, peak broadening, and a core–shell microstructure revealed by micron-resolution X-ray diffraction mapping. These results demonstrate that He is not always a passive pressure medium in DAC experiments and reveal a previously unrecognized regime of He-mediated lattice modification in Ta, complementing conventional ion-implantation studies relevant to nuclear and fusion structural materials.
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Shen, Guoyin, Smith, Jesse S., Ambos, Scott, Smith, Dean, Park, Changyong (ORCID:0000000233635788), Kenney-Benson, Curtis, Somayazulu, Maddury, Velisavljevic, Nenad. 2026-08-31. Anomalous lattice expansion of bcc Ta in helium-loaded diamond anvil cells. https://doi.org/10.1063/5.0351826
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