Negative thermal expansion near two structural quantum phase transitions

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Abstract

Recent experimental work has revealed that the unusually strong, isotropic structural negative thermal expansion in cubic perovskite ionic insulator ScF3 occurs in excited states above a ground state tuned very near a structural quantum phase transition, posing a question of fundamental interest as to whether this special circumstance is related to the anomalous behavior. To test this hypothesis, we report an elastic and inelastic x-ray scattering study of a second system Hg2I2 also tuned near a structural quantum phase transition while retaining stoichiometric composition and high crystallinity. We find similar behavior and significant negative thermal expansion below 100 K for dimensions along the body-centered-tetragonal c axis, bolstering the connection between negative thermal expansion and zeroerature structural transitions. We identify the common traits between these systems and propose a set of materials design principles that can guide discovery of new materials exhibiting negative thermal expansion.

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Occhialini, C. A., Handunkanda, S. U., Said, A., Trivedi, S., Guzmán-Verri, G. G., & Hancock, J. N. (2017). Negative thermal expansion near two structural quantum phase transitions. Physical Review Materials, 1(7). https://doi.org/10.1103/PhysRevMaterials.1.070603

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