November 2023

Journal

Glassy Phonon Heralds a Strain Glass State in a Shape Memory Alloy

By:
Stonaha, Paul J; Karaman, Ibrahim; Arroyave, Raymundo; Salas, Daniel; Bruno, Nick; Wang, Y.; Chisholm, Matthew F; Chi, Songxue ; Abernathy, Douglas L; Chumlyakov, Yury; Manley, Michael E
Journal Name:
Physical Review Letters
Page Number:
245701
Volume:
120
Issue Number:
24
Publication Date:
November 2023
View DOI Listing:
https://doi.org/10.1103/PhysRevLett.120.245701

Abstract

Shape memory strain glasses are frustrated ferroelastic materials with glasslike slow relaxation and nanodomains. It is possible to change a NiCoMnIn Heusler alloy from a martensitically transforming alloy to a nontransforming strain glass by annealing, but minimal differences are evident in the short- or long-range order above the transition temperature—although there is a structural relaxation and a 0.18% lattice expansion in the annealed sample. Using neutron scattering we find glasslike phonon damping in the strain glass but not the transforming alloy at temperatures well above the transition. Damping occurs in the mode with displacements matching the martensitic transformation. With support from first-principles calculations, we argue that the strain glass originates not with transformation strain pinning but with a disruption of the underlying electronic instability when disorder resonance states cross the Fermi level.