English

Elastic Softening in Synthetic Diamonds

Materials Science 2025-06-13 v6 Strongly Correlated Electrons Applied Physics

Abstract

This study reveals a previously unreported phenomenon: elastic softening of synthetic diamonds at temperatures below 1 K. We present ultrasonic measurements on single-crystalline, non-irradiated synthetic diamonds--namely, type-IIa (colorless) and type-Ib (yellow) diamonds grown by high-pressure high-temperature (HPHT) synthesis, as well as type-IIa diamond grown by chemical vapor deposition (CVD). A pronounced, divergent decrease in the elastic stiffness constant C44C_{44} was observed in all samples down to 20 mK. We attribute this softening to electric quadrupolar degrees of freedom with irreducible representation T2T_2 in diamond. The microscopic origin of this effect, however, remains unresolved. By analogy with similar behavior observed in silicon, we suggest the presence of an as-yet-unidentified, defect-derived quantum ground state with T1T_1 or T2T_2 symmetry at ppb-level concentrations in all three diamonds studied.

Keywords

Cite

@article{arxiv.2401.03377,
  title  = {Elastic Softening in Synthetic Diamonds},
  author = {Tatsuya Yanagisawa and Ruo Hibino and Hiroyuki Hidaka and Hiroshi Amitsuka and Toshiyuki Tashima and Mitsuhiro Akatsu and Yuichi Nemoto and Sergei Zherlitsyn and Joachim Wosnitza},
  journal= {arXiv preprint arXiv:2401.03377},
  year   = {2025}
}

Comments

7 Pages, 3 figures with supplemental materials (9 Pages, 2 figures)

R2 v1 2026-06-28T14:10:24.857Z