Nucleation and Growth Bottleneck in the Conductivity Recovery Dynamics of Nickelate Ultrathin Films.
basic_science · Level V
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- Record sourced from PubMed, PMID 32902285.
- Also identified by DOI 10.1021/acs.nanolett.0c02828.
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Abstract
We investigate THz conductivity dynamics in NdNiO<sub>3</sub> and EuNiO<sub>3</sub> ultrathin films (15 unit cells, u.c., ∼5.7 nm thick) following a photoinduced thermal quench into the metallic state and reveal a clear contrast between first- and second-order dynamics. While in EuNiO<sub>3</sub> the conductivity recovers exponentially, in NdNiO<sub>3</sub> the recovery is nonexponential and slower than a simple thermal model. Crucially, it is consistent with first-order dynamics and well-described by a 2d Avrami model, with supercooling leading to metastable phase coexistence on the nano- to mesoscopic scale. This novel observation is a fundamentally dynamic manifestation of the first-order character of the insulator-to-metal transition, which the nanoscale thickness of our films and their fast cooling rate enable us to detect. The large transients seen in our films are promising for fast electronic (and magnetic) switching applications.