Huge oxygen isotope effect on local lattice fluctuations in La(2-x)Sr(x)CuO(4) superconductor
A. Lanzara, N. L. Saini, A. Bianconi, Guo-meng Zhao, K. Conder, H., Keller, K. A. Muller

TL;DR
This study reveals a significant isotope effect on local lattice fluctuations in La(2-x)Sr(x)CuO(4), suggesting strong electron-lattice interactions influence polaron behavior and stripe formation in high-temperature superconductors.
Contribution
It provides the first direct evidence of a large isotope effect on lattice fluctuations in cuprates, highlighting the importance of electron-lattice interactions in their physics.
Findings
Isotope substitution increases polaron ordering temperature from 110 K to 170 K.
Large isotope effect indicates strong electron-lattice coupling in cuprates.
Local lattice fluctuations are highly sensitive to oxygen isotope mass.
Abstract
Recently a growing number of experiments have provided indications of the key role of polarons (composite particles formed by a charge strongly coupled with a local lattice deformation) in doped perovskites, hosting colossal magnetoresistance (CMR) and high Tc superconductivity. While the role of polarons is generally recognized in manganites due to the large amplitude of the local lattice deformation, the scientific debate remains open on the cuprates where the lattice deformation is smaller and the anomalous normal metallic phase becomes complex due to the coexistence of polarons with itinerant carriers. Moreover the segregation of polarons and itinerant charges in different spatial domains forming lattice-charge stripes as well as the slow dynamic 1D spin fluctuations have been observed. The debate on the driving force for the stripe formation remains object of discussion since it…
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Taxonomy
TopicsMagnetic and transport properties of perovskites and related materials · Physics of Superconductivity and Magnetism · High-pressure geophysics and materials
