| Literature DB >> 28128621 |
R Briggs1, M G Gorman1, A L Coleman1, R S McWilliams1, E E McBride2, D McGonegle3, J S Wark3, L Peacock4, S Rothman4, S G Macleod5, C A Bolme6, A E Gleason6, G W Collins7, J H Eggert7, D E Fratanduono7, R F Smith7, E Galtier8, E Granados8, H J Lee8, B Nagler8, I Nam8, Z Xing8, M I McMahon9.
Abstract
Using x-ray diffraction at the Linac Coherent Light Source x-ray free-electron laser, we have determined simultaneously and self-consistently the phase transitions and equation of state (EOS) of the lightest transition metal, scandium, under shock compression. On compression scandium undergoes a structural phase transition between 32 and 35 GPa to the same bcc structure seen at high temperatures at ambient pressures, and then a further transition at 46 GPa to the incommensurate host-guest polymorph found above 21 GPa in static compression at room temperature. Shock melting of the host-guest phase is observed between 53 and 72 GPa with the disappearance of Bragg scattering and the growth of a broad asymmetric diffraction peak from the high-density liquid.Entities:
Year: 2017 PMID: 28128621 DOI: 10.1103/PhysRevLett.118.025501
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161