Ultraweak electron-phonon coupling strength in cubic boron arsenideunveiled by ultrafast dynamics

ORAL

Abstract

We report a time-resolved ultrafast quasiparticle dynamics investigation of c-BAs, which is a recently discovered highly thermally conducting material. The excited-state ultrafast relaxation channels dictated by the electron-phonon coupling (EPC), phonon-phonon scattering, and radiative electron-hole recombination have been unambiguously identified, along with their typical interaction times. Significantly, the EPC strength is obtained from the dynamics, with a value of ?T2= 0.008 (corresponding to ?2> = 1.18 ± 0.08 ps–2), demonstrating an unusually weak coupling between the electrons and phonons. As a comparison, an ultraweak EPC strength for graphene is also expected. We propose that preserving an ultrasmall EPC strength may be a prerequisite for exhibiting an ultrahigh thermal conductivity. Our investigation provides insight for searching and designing ultrahigh thermal conductivity materials. Notably, during our analysis we have generalized the fluence-dependence method for obtaining the EPC strength to room temperature, which can be applied to many other types of quantum materials in the future.

*This work was supported by the National KeyResearch and Development Program of China [GrantsNo. 2017YFA0303603 and No. 2021YFA1400201 (J.Z.)],the National Natural Science Foundation of China [GrantsNo. 11774408 and No. 11574383 (J.Z.), and Grant No.11874328 (E.L.)], the Strategic Priority Research Program ofChinese Academy of Sciences (CAS) [Grant No.XDB30000000 (J.Z.)], the International Partnership Programof CAS [Grant No. GJHZ1826 (J.Z.)], Beijing NaturalScience Foundation [Grant No. 4191003 (J.Z.)], and the CASInterdisciplinary Innovation Team (J.Z.). The work carriedout at UH is sponsored by the Office of Naval Researchunder MURI Grant No. N00014-16-1-2436 (G.G., F.T., andZ.R.). J.B. acknowledges support from the Robert A. WelchFoundation (Grant No. E-1728) .

Publication: Z. Y. Tian, Q. Y. Zhang, Y. W. Xiao, G. A. Gamage, F. Tian, S. Yue, V. G. Hadjiev, J. M. Bao, Z. F. Ren, E. J. Liang*, and Jimin Zhao*, Ultraweak electron-phonon coupling strength in cubic boron arsenide unveiled by ultrafast dynamics, Physical Review B 105, 174306 (2022).

Presenters

  • Zhenyun Tian

    • Institute of Physics, Chinese Academy Science

Authors

  • Zhenyun Tian

    • Institute of Physics, Chinese Academy Science