Lattice dynamics of the high temperature shape memory alloy Nb-Ru
S. M. Shapiro, G. Xu, G. Gu, J. Gardner, R. W. Fonda
Abstract
Nb-Ru is a high temperature shape memory alloy that undergoes a Martensitic transformation from a parent cubic b-phase into a tetragonal b' phase at TM 900 C. Measurements of the phonon dispersion curves show that the [110]-TA2 phonon branch, corresponding in the q=0 limit to the elastic constant C'=1/2(C11-C12) has an anomalous temperature dependence. Nearly the entire branch softens with decreasing temperature as TM is approached. The temperature dependence of the low-q phonon energies suggests that the elastic constants would approach 0 as T approaches TM, indicating a second order transition. No additional lattice modulation is observed in the cubic phase.
Create a lesson
Related papers
Real-space overlap is not enough: ambiguity in nanobeam iterative ptychography
Stephanie M. Ribet, Mohsen Danaie, Willem P. M. de Kleijne et al.
Covariant formula for the driving force for interface migration
Adam Morawiec
Coexisting Large and Small Polarons in Photoexcited CeO2
Valentina Mazzotti, Eleonora Spurio, Nicolas Delnour et al.
Attosecond Reconstruction of Strain Tensors via Electronic Fingerprints
Jing Li, Jiayu Yan, Guoyong Yuan et al.
Two-step transient liquid phase bonding of NiTi to Ti-6Al-4V through a NbZrW barrier
Zhaoxi Cao, Samuel Price, John P. Reidy et al.
Libron-phonon coupling and hydrogen-bond dynamics in the vacancy-ordered perovskite (NH4)2SnCl6: a temperature- and pressure-dependent Raman study
Vasco S. Neto, Mayra A. P. Gómez, Bruno S. Araújo et al.