Strongly Anisotropic Charge Dynamics in La3Ni2O7 with Coherent-to-Incoherent Crossover of Interlayer Charge Dynamics
Bo Su, Chaoxin Huang, Jianzhou Zhao, Mengwu Huo, Jianlin Luo, Meng, Wang, Zhi-Guo Chen

TL;DR
This study reveals highly anisotropic charge dynamics in La3Ni2O7, showing a crossover from coherent to incoherent interlayer charge transport with temperature, while in-plane charge transport remains coherent across the studied temperature range.
Contribution
It provides the first detailed optical spectroscopy analysis of charge dynamics anisotropy and the coherent-incoherent crossover in La3Ni2O7.
Findings
Crossover from coherent to incoherent interlayer charge dynamics at higher temperatures.
Persistent coherent in-plane charge transport from 10 K to 300 K.
Strong anisotropy in charge dynamics at low temperatures.
Abstract
We report an optical spectroscopy study of the charge-dynamics anisotropy in the La3Ni2O7 single crystals with the electric field of the incident light parallel to the crystalline c-axis and ab-plane respectively. The evolution of the low-energy part of its c-axis optical conductivity spectra ({\sigma}1c({\omega})) from a Drude component to a finite-energy peak, together with the change in the c-axis electron mean-free-path which is distinctly longer than the c-axis lattice constant at 10 K but is shorter than the c-axis lattice constant at 300 K, demonstrates a crossover from coherent to incoherent interlayer charge dynamics in La3Ni2O7, which is associated with the variation from weak to strong dissipation within its ab-plane. In contrast, the Drude component robust in its {\sigma}1ab({\omega}) and the long ab-plane electron mean-free-path greater than the a-axis and b-axis unit-cell…
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Taxonomy
TopicsMagnetic and transport properties of perovskites and related materials · Solid-state spectroscopy and crystallography · Inorganic Chemistry and Materials
