Phase transition as a relaxation from shear stress in uniaxial compression

COFFEE_KLATCH

Abstract

In well-known phase transition mechanism under laser shocked material, highly and elastically strained lattice would be relaxed by plasticity as pressure inside of material exceeds Hugoniot Elastic Limit (HEL). Then phase transition to higher pressure state would come after the plastic deformation if enough pressure is given. In different phase transition mechanism we will present, highly strained lattice would be relaxed by transition itself, and requires lower laser energy and shorter transition time to synthesize higher pressure state. We would like to introduce this mechanism through the X-ray Free Electron Laser (XFEL) observation of phase transition in carbon materials.

*This work is supported by JSPS KAKENHI 15K13609.

Presenters

  • Kento Katagiri

    • Osaka University

Authors

  • Kento Katagiri

    • Osaka University
  • Norimasa Ozaki

    • Osaka University
  • Ryo Hazama

    • Osaka University
  • Takahiro Matsuoka

    • Gifu University
  • Takeshi Matsuoka

    • Osaka University
  • Kenjiro Takahashi

    • Osaka University
  • Kohei Miyanishi

    • Osaka University
  • Yusuke Seto

    • Kobe University
  • Yuichi Inubushi

    • JASRI
  • Toshinori Yabuuchi

    • JASRI
  • Tadashi Togashi

    • JASRI
  • Makina Yabashi

    • RIKEN
  • Ryosuke Kodama

    • Osaka University