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Related papers: Native defects and erbium impurities in CaWO4

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Ceria (CeO$_2$) is a material of significant technological importance. A detailed understanding of the material's defect physics and chemistry is key to understanding and optimizing its properties. Here, we report a hybrid…

Materials Science · Physics 2025-09-11 Khang Hoang , Michelle D. Johannes

We report first-principles calculations that clarify the formation energies and charge transition levels of native point defects (Ga and O vacancies, interstitials, and a Ga vacancy-O vacancy pair) in corundum structured ${\alpha}$-Ga2O3.…

Materials Science · Physics 2019-08-13 Takuma Kobayashi , Tomoya Gake , Yu Kumagai , Fumiyasu Oba , Yu-ichiro Matsushita

Calcium oxide (CaO) is a promising host for quantum defects because of its ultrawide band gap and potential for long spin coherence times. Using hybrid functional calculations, we investigate the intrinsic point defects and how they limit…

Materials Science · Physics 2024-04-02 Zhenkun Yuan , Geoffroy Hautier

Erbium (Er) doped GaN has been studied extensively for optoelectronic applications, yet its defect physics is still not well understood. In this work, we report a first-principles hybrid density functional study of the structure,…

Materials Science · Physics 2017-10-30 Khang Hoang

Gallium arsenide (GaAs) doped with erbium (Er), a material of interest for optoelectronics and quantum information, has been studied for decades. Yet the formation of Er luminescence centers in the semiconductor host and their properties…

Materials Science · Physics 2026-03-10 Khang Hoang

We present a detailed spectroscopic study of the $^4\mathrm{I}_{13/2}$ and $^4\mathrm{I}_{15/2}$ Er$^{3+}$ multiplets of Er:CaWO$_4$ grown without a co-dopant. Using photoluminescence and photoluminescence excitation measurements, we find…

Mesoscale and Nanoscale Physics · Physics 2024-12-06 Fabian Becker , Catherine L. Curtin , Sudip KC , Tim Schneider , Lorenz J. J. Sauerzopf , Ibrahim Elzeiny , Kai Müller

First-principles calculations are employed to explore avenues to increase the N\'eel temperature ($T_{\mathrm{N}}$) of the magnetoelectric antiferromagnet Cr$_2$O$_3$ through doping. Employing the hybrid functional method, we calculate the…

Materials Science · Physics 2025-06-13 Xuecong Wang , Sai Mu

According to defect chemistry, the experimental observations of enhanced cation diffusion in a reducing atmosphere in zirconia, ceria and barium titanate are in support of an interstitial mechanism. Yet previous computational studies always…

Materials Science · Physics 2018-08-16 Yanhao Dong , Liang Qi , Ju Li , I-Wei Chen

We present a first-principles study of defect formation and electronic structure of erbium (Er)-doped yttria (Y$_2$O$_3$). This is an emerging material for spin-photon interfaces in quantum information science due to the narrow linewidth…

Materials Science · Physics 2023-12-04 Churna Bhandari , Cüneyt Şahin , Durga Paudyal , Michael E. Flatté

Cerium oxide (ceria, CeO2) is one of the most promising mixed ionic and electronic conducting materials. Previous atomistic analysis has covered widely the effects of substitution on oxygen vacancy migration. However, an in-depth analysis…

Materials Science · Physics 2021-02-12 Haiwu Zhang , Ivano E. Castelli , Simone Santucci , Simone Sanna , Nini Pryds , Vincenzo Esposito

The brownmillerite-type barium indate (Ba$_2$In$_2$O$_5$) is a potential electrolyte for mixed ionic-electronic conduction in solid oxide fuel cells. Revealing the defect chemistry of this material is key to understanding its ionic and…

Materials Science · Physics 2026-05-27 Rachele Sciotto , Karsten Albe

We report a comprehensive first-principles study of the thermodynamics and transport of intrinsic point defects in layered oxide cathode materials LiMO$_2$ (M=Co, Ni), using density-functional theory and the Heyd-Scuseria-Ernzerhof screened…

Materials Science · Physics 2014-12-17 Khang Hoang , Michelle D. Johannes

Understanding the luminescence of GaN doped with erbium (Er) requires a detailed knowledge of the interaction between the rare-earth dopant and the nitride host, including intrinsic defects and other impurities that may be present in the…

Materials Science · Physics 2017-10-30 Khang Hoang

We use density functional theory (DFT) to explore the physical properties of an $Er_{ W}$ point defect in monolayer $WS_{ 2}$. Our calculations indicate that electrons localize at the dangling bonds associated with a tungsten vacancy…

The formation energies of the oxygen vacancy and titanium interstitial in rutile TiO2 were calculated by the screened exchange (sX) hybrid density functional method, which gives a band gap of 3.1 eV, close to the experimental value. The O…

Atomic and Molecular Clusters · Physics 2015-06-05 Hsin-Yi Lee , Stewart J. Clark , John Robertson

A comprehensive analysis is presented for the diffusivity of oxygen defects and oxygen self-diffusion in ThO$-2$. The migration energy and diffusivity of oxygen defects with nominal charges have been investigated using density functional…

Materials Science · Physics 2025-10-21 Maniesha Singh , Anter El-Azab

We present a detailed first-principles study which explores the configurational space along the relevant reactions and migration paths involving the formation and dissociation of interstitial carbon-oxygen complexes, $\mathrm{C_{i}O_{i}}$…

Materials Science · Physics 2020-06-03 H. M. Ayedh , E. V. Monakhov , J. Coutinho

We present a first-principles study of native defects in NaAlH$_4$. Our analysis indicates that the structure and energetics of these defects can be interpreted in terms of elementary building blocks, which include $V_{\rm{AlH_4}}^+$,…

Materials Science · Physics 2014-12-16 Gareth B. Wilson-Short , Anderson Janotti , Khang Hoang , Amra Peles , Chris G. Van de Walle

First principles density functional theory (DFT) investigation of native interstitials and the associated self-diffusion mechanisms in {\alpha}-Cr2O3 reveals that interstitials are more mobile than vacancies of corresponding species. Cr…

Ab-initio calculations for the electronic and optical properties of single-layer (SL) tungsten disulfide (WS$_2$) in the presence of substitutional Erbium defects (Er$_{\rm W}$) are presented, where the W atom is replaced by an Er atom.…

Mesoscale and Nanoscale Physics · Physics 2021-09-29 M. A. Khan , Michael N. Leuenberger
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