Temperature-driven sodium-ion dynamical-to-static crossover in the zig-zag ordered phase of Na0.5CoO2
Shangfei Wu, Hengxin Tan, Dong Wu, Mingshu Tan, Xinyu Zhou, Tianchen Hu, Tao Dong, Feng Jin, Qingming Zhang, Nanlin Wang
Abstract
We employ polarization-resolved Raman spectroscopy combined with first-principles calculations to study the sodium-ion lattice dynamics in a sodium zig-zag ordered cobaltate compound Na0.5CoO2. We detect two sodium phonon modes for the first time, and their mode frequencies are consistent with first-principles phonon calculations based on an orthorhombic unit cell. We find that they appear below around T*30050K with large linewidth broadening, much lower than the sodium zig-zag ordering temperature TS460K, and then narrow at lower temperatures. We interpret the sodium-phonon anomalies occurring at T* as a dynamical-to-static crossover involving mainly the motion of sodium ions. Our results suggest that the gradual freezing of the sodium ions and the well-defined static sodium-zigzag order below T* set the stage for the emergent electronic and magnetic orders in the CoO2 layer of Na0.5CoO2.
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