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Related papers: Native defects and erbium impurities in CaWO4

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Using density functional theory, we calculated the formation energy of native point defects (vacancies, interstitials and antisites) in MAX phase $Ti_2GeC$ and $Ti_3GeC_2$ compounds. Ge vacancy with formation energy of 2.87 eV was the most…

Materials Science · Physics 2019-04-09 M. H. N. Assadi , H. Katayama-Yoshida

We have performed density functional calculations of the formation energies of substitutional transition metal (TM) defects, C vacancies, and C interstitial defects in TiC. In addition we have evaluated the migration energy barriers for C…

Materials Science · Physics 2013-03-13 Mikael Råsander , Biplab Sanyal , Ulf Jansson , Olle Eriksson

We address the fundamental question of crossover from localized to itinerant state of a paradigmatic heavy fermionmaterial CeIrIn5. The temperature evolution of the one electron spectra and the optical conductivity is predicted from first…

Strongly Correlated Electrons · Physics 2009-11-13 J. H. Shim , K. Haule , G. Kotliar

We study the electronic and magnetic structure of carbon and nitrogen impurities and interstitials in rutile TiO${_2}$. To this end we perform \textit{ab-initio} calculations of a 48-atom supercell employing the VASP code. In order to…

Materials Science · Physics 2015-01-22 Jacqueline Atanelov , Christoph Gruber , Peter Mohn

In a non-Hermitian optical system with loss and gain, an exceptional point (EP) will arise under specific parameters where the eigenvalues and eigenstates exhibit simultaneous coalescence. Here we report a dynamical switching of lasing…

Optics · Physics 2019-12-30 Yicong Zhang , Weiwei Liu , Qingjie Liu , Bing Wang , Peixiang Lu

We analyze Ge-related defects in Ge-doped SiO_2 using first-principles density functional techniques. Ge is incorporated at the level of ~ 1 mol % and above. The growth conditions of Ge:SiO_2 naturally set up oxygen deficiency, with vacancy…

Materials Science · Physics 2009-11-07 C. M. Carbonaro , V. Fiorentini , F. Bernardini

The first principles calculations (GGA) have been applied to study the crystallographic defects in $\alpha$-PbO in order to understand an origin of $n$- and $p$-type conductivity in otherwise undoped $\alpha$-PbO. It was found that…

Materials Science · Physics 2015-06-15 J. Berashevich , J. A. Rowlands , A. Reznik

We report first-principles calculations that clarify the formation energies and charge transition levels of native point defects and carbon clusters in the 4H polytype of silicon carbide (4H-SiC) under a carbon-rich condition. We applied a…

Materials Science · Physics 2019-03-26 Takuma Kobayashi , Kou Harada , Yu Kumagai , Fumiyasu Oba , Yu-ichiro Matsushita

The crystal structure of Fe3O4 below the 122 K Verwey transition has been refined using high-resolution X-ray and neutron powder diffraction data. The refinements give direct evidence for charge ordering (CO) over four independent…

Strongly Correlated Electrons · Physics 2009-11-07 J. P. Wright , J. P. Attfield , P. G. Radaelli

We perform an electronic structure study for cerium oxide homogeneously-doped with cobalt impurities, focusing on the role played by oxygen vacancies and structural relaxation. By means of full-potential ab-initio methods, we explore the…

Strongly Correlated Electrons · Physics 2010-06-18 V. Ferrari , A. M. Llois , V. Vildosola

Rare-earth-ion-doped crystals has emerged as a promising platform for quantum technologies, owing to their narrow telecom-band optical emission, long spin memory, and compatibility with silicon integrated photonic architectures. However,…

Quantum Physics · Physics 2026-05-11 Basanta Mistri , Vishal Ranjan , Siddharth Dhomkar

We report on a photo-induced transient state of YBa2Cu2O6+x in which transport perpendicular to the Cu-O planes becomes highly coherent. This effect is achieved by excitation with mid-infrared optical pulses, tuned to the resonant frequency…

Superconductivity · Physics 2014-06-04 S. Kaiser , C. R. Hunt , D. Nicoletti , W. Hu , I. Gierz , H. Y. Liu , M. Le Tacon , T. Loew , D. Haug , B. Keimer , A. Cavalleri

Properties of point defects resulting from the incorporation of inert-gas atoms in bcc tungsten are investigated systematically using first-principles density functional theory (DFT) calculations. The most stable configuration for the…

Materials Science · Physics 2015-10-29 Duc Nguyen-Manh , S. L. Dudarev

A prevailing theory for the interstellar production of complex organic molecules (COMs) involves formation on warm dust-grain surfaces, via the diffusion and reaction of radicals produced through grain-surface photodissociation of stable…

Astrophysics of Galaxies · Physics 2020-08-19 Mihwa Jin , Robin T. Garrod

The identification of alternatives to the Lithium-ion battery architecture remains a crucial priority in the diversification of energy storage technologies. Accompanied by the low reduction potential of $\mathrm{Ca^{2+}/Ca}$, -2.87 V vs.…

Materials Science · Physics 2021-07-29 Wang Lu , Juefan Wang , Gopalakrishnan Sai Gautam , Pieremanuele Canepa

Interfaces between complex oxides constitute a unique playground for 2D electron systems (2DES), where superconductivity and magnetism can arise from combinations of bulk insulators. The 2DES at the LaAlO3/SrTiO3 interface is one of the…

Strongly Correlated Electrons · Physics 2017-11-23 Giordano Mattoni , David J. Baek , Nicola Manca , Nils Verhagen , Lena F. Kourkoutis , Alessio Filippetti , Andrea D. Caviglia

The isostructural {\alpha}-{\gamma} phase transition in cerium is analyzed using density-functional theory with different exchange-correlation functionals, in particular the PBE0 hybrid functional and the exact- exchange plus correlation in…

Strongly Correlated Electrons · Physics 2015-06-11 Marco Casadei , Xinguo Ren , Patrick Rinke , Angel Rubio , Matthias Scheffler

Ir-based materials have drawn much attention due to the observation of insulating phase believed to be driven by spin-orbit coupling while Ir 5$d$ states are expected to be weakly correlated due to their large orbital extensions. IrO$_2$, a…

Hybrid materials combining an organic matrix and high-Z nanomaterials show potential for applications in radiation detection, allowing unprecedented device architectures and functionality. Herein, novel hybrid organic-inorganic systems were…

This work explores erbium-doped calcium molybdate (CaMoO$_4$) thin films grown on silicon and yttria stabilized zirconia (YSZ) substrates, as a potential solid state system for C-band (utilizing the $\sim$1.5 $\mu$m Er$^{3+}$ 4f-4f…

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