No role for phonon entropy in the fcc-fcc volume collapse transition in Ce0.9Th0.1 at ambient pressure
Publication
, Journal Article
Manley, ME; McQueeney, RJ; Fultz, B; Swan-Wood, T; Delaire, O; Goremychkin, EA; Cooley, JC; Hults, WL; Lashley, JC; Osborn, R; Smith, JL
Published in: Physical Review B
January 2003
Duke Scholars
Published In
Physical Review B
DOI
EISSN
1095-3795
ISSN
0163-1829
Publication Date
January 2003
Volume
67
Issue
1
Citation
APA
Chicago
ICMJE
MLA
NLM
Manley, M. E., McQueeney, R. J., Fultz, B., Swan-Wood, T., Delaire, O., Goremychkin, E. A., … Smith, J. L. (2003). No role for phonon entropy in the fcc-fcc volume collapse transition in Ce0.9Th0.1 at ambient pressure. Physical Review B, 67(1). https://doi.org/10.1103/PhysRevB.67.014103
Manley, M. E., R. J. McQueeney, B. Fultz, T. Swan-Wood, O. Delaire, E. A. Goremychkin, J. C. Cooley, et al. “No role for phonon entropy in the fcc-fcc volume collapse transition in Ce0.9Th0.1 at ambient pressure.” Physical Review B 67, no. 1 (January 2003). https://doi.org/10.1103/PhysRevB.67.014103.
Manley ME, McQueeney RJ, Fultz B, Swan-Wood T, Delaire O, Goremychkin EA, et al. No role for phonon entropy in the fcc-fcc volume collapse transition in Ce0.9Th0.1 at ambient pressure. Physical Review B. 2003 Jan;67(1).
Manley, M. E., et al. “No role for phonon entropy in the fcc-fcc volume collapse transition in Ce0.9Th0.1 at ambient pressure.” Physical Review B, vol. 67, no. 1, Jan. 2003. Manual, doi:10.1103/PhysRevB.67.014103.
Manley ME, McQueeney RJ, Fultz B, Swan-Wood T, Delaire O, Goremychkin EA, Cooley JC, Hults WL, Lashley JC, Osborn R, Smith JL. No role for phonon entropy in the fcc-fcc volume collapse transition in Ce0.9Th0.1 at ambient pressure. Physical Review B. 2003 Jan;67(1).
Published In
Physical Review B
DOI
EISSN
1095-3795
ISSN
0163-1829
Publication Date
January 2003
Volume
67
Issue
1