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Related papers: Small electron polarons bound to interstitial tant…

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Femto-/nanosecond pulse-induced, red and near-infrared absorption is studied in $\mathrm{LiNb}_{1-x}\mathrm{Ta}_{x}\mathrm{O}_3$ (LNT) solid solutions with the goal to probe the intrinsic defect structure via the formation, transport and…

Charge trapping and formation of polarons is a pervasive phenomenon in transition metal oxide compounds, in particular at the surface, affecting fundamental physical properties and functionalities of the hosting materials. Here we…

Materials Science · Physics 2018-07-25 Michele Reticcioli , Martin Setvin , Michael Schmid , Ulrike Diebold , Cesare Franchini

Small polaron formation is dominant across a range of condensed matter systems. Small polarons are usually studied in terms of ground-state transport and thermal fluctuations, but small polarons can also be created impulsively by…

Materials Science · Physics 2023-07-17 Ye-Jin Kim , Jocelyn L. Mendes , Young Jai Choi , Scott K. Cushing

Lithium titanium oxide Li$_4$Ti$_5$O$_{12}$ (LTO) is an intriguing anode material promising particularly long lived batteries, due to its remarkable phase stability during (dis)charging of the cell. However, its usage is limited by its low…

Materials Science · Physics 2020-01-03 Matthias Kick , Cristina Grosu , Markus Schuderer , Christoph Scheurer , Harald Oberhofer

Small polarons (SPs) are known to exist in most important transition metal oxides (TMOs); however, the nature of small polaron formation remains enigmatic, and a fundamental understanding of how SPs impact the intrinsic electronic structure…

Materials Science · Physics 2019-10-23 Tyler J. Smart , Tuan Anh Pham , Yuan Ping , Tadashi Ogitsu

The question whether excess electrons in SrTiO3 form free or trapped carriers is a crucial aspect for the electronic properties of this important material. This fundamental ambiguity prevents a consistent interpretation of the puzzling…

Strongly Correlated Electrons · Physics 2018-03-15 Xianfeng Hao , Zhiming Wang , Michael Schmid , Ulrike Diebold , Cesare Franchini

Polarons are ubiquitous in many semiconductors and have been linked with conductivity and optical response of materials for photovoltaics and heterogeneous catalysis, yet how surface polarons influence adsorption remains unclear. Here, by…

Materials Science · Physics 2020-03-11 Ji Chen , Christopher Penschke , Ali Alavi , Angelos Michaelides

We combine infrared reflectivity and EXAFS (Extended X-ray Absorption Fine Structure) techniques to study the solid solution La0.67Ca0.33MnO3 prepared by different methods yielding samples with different insulator-metal transition…

The behavior of electrons in the conduction band of TiO2 and other transition-metal oxides is key to the many applications of these materials. Experiments seem to produce conflicting results: optical and spin-resonance techniques reveal…

Materials Science · Physics 2015-06-12 A. Janotti , C. Franchini , J. B. Varley , G. Kresse , C. G. Van de Walle

We apply the Dynamical Mean Field Theory to calculate the low-density limit of the optical conductivity in the Holstein model. This non perturbative treatment allows to span continuously from the weak-coupling quasi-free electron behaviour…

Strongly Correlated Electrons · Physics 2007-05-23 S. Fratini F. de Pasquale S. Ciuchi

When an excess charge carrier is added to a one-dimensional (1D) semiconductor immersed in a polar solvent, the carrier can undergo self-localization into a large-radius adiabatic polaron. We explore the local optical absorption from the…

Materials Science · Physics 2009-11-13 G. L. Ussery , Yu. N. Gartstein

YTiO3, as a prototypical Mott insulator, has been the subject of numerous experimental investigations of its electronic structure. The onset of absorption in optical conductivity measurements has generally been interpreted to be due to…

Materials Science · Physics 2014-10-10 Burak Himmetoglu , Anderson Janotti , Lars Bjaalie , Chris G. Van de Walle

Small polarons remain a significant bottleneck in the realization of efficient devices using transition metal oxides. Routes to engineer small polaron coupling to electronic states and lattice modes to control carrier localization remain…

In a solid, electrons can be scattered both by phonons and other electrons. First proposed by Landau, scattering by phonons can lead to a composite entity called a polaron, in which a lattice distortion traps an itinerant electron (or hole)…

Materials Science · Physics 2023-01-18 Yunfan Liang , Min Cai , Lang Peng , Zeyu Jiang , Damien West , Ying-Shuang Fu , Shengbai Zhang

Photocatalytic nitrogen reduction under ambient conditions represents a promising pathway toward sustainable ammonia production. However, the fundamental mechanisms, particularly the role of photogenerated charge carriers and their…

Materials Science · Physics 2026-04-13 Manoj Dey , Ritesh Kumar , Abhishek Kumar Singh

As a prototypical Mott insulator with ferromagnetic ordering, YTiO3 (YTO) is of great interest in the study of strong electron correlation effects and orbital ordering. Here we report the first molecular beam epitaxy (MBE) growth of YTO…

Polarons play a major role in the description of optical, electrical and dielectrical properties of several ferroelectric oxides. The motion of those particles occur by elementary hops among the material lattice sites. In order to compute…

Materials Science · Physics 2024-10-17 Anton Pfannstiel , Mirco imlau , Marco Bazzan , Laura Vittadello

We introduce a scalable, translationally invariant variational theory for ab initio polarons that remains applicable across coupling regimes without resorting to supercells. Our approach combines a momentum-projected Toyozawa-type…

Materials Science · Physics 2026-05-08 Moritz K. A. Baumgarten , Hamlin Wu , Tong Jiang , Joonho Lee

Polarons, quasiparticles formed through interactions between lattice and charge carriers (electrons and holes), strongly influence the electronic and optical properties of functional materials. In nanostructured BiVO$_{4}$, polaron…

Materials Science · Physics 2025-11-26 Seyeon Park , Yajing Zhang , Michele Reticcioli , Cesare Franchini , Bongjae Kim

A combination of Scanning Tunneling Microscopy/Spectroscopy and Density Functional Theory (DFT+U) is used to characterize excess electrons in TiO$_2$ rutile and anatase, two prototypical materials with identical chemical composition but…

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