arXiv · cond-mat/0308416
The role of the lattice in the $γ\to α$ phase transition of Ce: a high pressure neutron and x-ray diffraction study
Abstract
The temperature and pressure dependence of the thermal displacements and lattice parameters were obtained across the $γ\to α$ phase transition of Ce using high-pressure, high-resolution neutron and synchrotron x-ray powder diffraction. The estimated vibrational entropy change per atom in the $γ\to α$ phase transition, $ΔS^{γ- α}_{\rm vib} \approx (0.75 \pm 0.15)$k$_{\rm B}$, is about half of the total entropy change. The bulk modulus follows a power-law pressure dependence which is well described using the framework of electron-phonon coupling. These results clearly demonstrate the importance of lattice vibrations, in addition to the spin and charge degrees of freedom, for a complete description of the $γ\to α$ phase transition in elemental Ce.
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I. -K. Jeong, T. W. Darling, M. J. Graf, Th. Proffen, R. H. Heffner, Yongjae Lee, T. Vogt, J. D. Jorgensen. 2003-08-20. The role of the lattice in the $γ\to α$ phase transition of Ce: a high pressure neutron and x-ray diffraction study. https://doi.org/10.1103/physrevlett.92.105702
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