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Recovery of a high-pressure phase formed under laser-driven compression
Author(s) -
M. G. Gorman,
D. McGonegle,
S. J. Tracy,
Samantha M. Clarke,
C. A. Bolme,
A. E. Gleason,
S. J. Ali,
Sovanndara Hok,
C. W. Greeff,
P. G. Heighway,
K. Hulpach,
Benny Glam,
Eric Galtier,
Hae Ja Lee,
J. S. Wark,
J. H. Eggert,
J. K. Wicks,
R. F. Smith
Publication year - 2020
Publication title -
physical review. b./physical review. b
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.78
H-Index - 465
eISSN - 2469-9969
pISSN - 2469-9950
DOI - 10.1103/physrevb.102.024101
Subject(s) - materials science , metastability , compression (physics) , shock (circulatory) , laser , phase (matter) , nanosecond , shock wave , diffraction , ambient pressure , high pressure , phase transition , optics , thermodynamics , composite material , physics , quantum mechanics , medicine

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