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초록
Recently, an alkaline earth hydride CaH6 having a sodalitelike clathrate structure has been experimentally synthesized at megabar pressures with a maximum T (c) of 215 K, comparable to that of a rare earth hydride LaH10. Here, based on first-principles calculations, we find that CaH6 exhibits a huge peak in the Eliashberg spectral function alpha (2) F around the low-frequency region of H-derived phonon modes, in contrast to LaH10 having a widely spreading spectrum of alpha (2) F over the whole frequencies of H-derived phonon modes. It is revealed that the huge peak of alpha (2) F in CaH6 is associated with an effective electron-phonon coupling (EPC) between low-frequency optical phonons and hybridized H 1s and Ca 3d states near the Fermi energy. As pressure increases, the strengthened H-H covalent bonding not only induces a hardening of optical phonon modes but also reduces the electron-phonon matrix elements related to the low-frequency optical modes, thereby leading to a lowering of the EPC constant. It is thus demonstrated that H-derived low-frequency phonon modes play an important role in the pressure-induced variation of T (c) in CaH6. Furthermore, unlike the presence of two distinct superconducting gaps in LaH10, CaH6 is found to exhibit a single isotropic superconducting gap.
키워드
- 제목
- Electron-phonon coupling and superconductivity in an alkaline earth hydride CaH6 at high pressures
- 저자
- 전현수; Wang, Chongze; 유서원; Bok, Jin Mo; Bang, Yunkyu; Cho, Jun-Hyung
- 발행일
- 2022-08
- 유형
- Article
- 권
- 24
- 호
- 8
- 페이지
- 1 ~ 10