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The impact of uni-axial compressive and tensile strain and diameter on the electronic band structure of indium arsenide (InAs) nanowires (NWs) is investigated using first principles calculations. Effective masses and band gaps are extracted…

Applied Physics · Physics 2018-08-17 Pedram Razavi , James C. Greer

We have used an eight band model to investigate the electronic structures and to calculate the optical matrix elements of InAs-GaSb broken gap semiconductor heterostructures. The unusual hybridization of the conduction band states in InAs…

Materials Science · Physics 2009-10-31 E. Halvorsen , Y. Galperin , K. A. Chao

Employing the density-functional theory with local density approximation, we show that the fully hydrogenated monolayer-hexagonal boron nitride (H$_2$BN) has a direct-band gap of 2.96 eV in the blue-light region while the pristine…

Superconductivity · Physics 2021-10-04 Takat B. Rawal , Ling-Hua Chang , Hao-Dong Liu , Hong-Yan Lu , C. S. Ting

We have synthesized epitaxial Sr2IrO4 thin-films on various substrates and studied their electronic structures as a function of lattice-strains. Under tensile (compressive) strains, increased (decreased) Ir-O-Ir bond-angles are expected to…

Strongly Correlated Electrons · Physics 2013-09-09 J. Nichols , J. Terzic , E. G. Bittle , O. B. Korneta , L. E. De Long , J. W. Brill , G. Cao , S. S. A. Seo

Understanding the mechanisms that drive spontaneous rotational symmetry breaking in correlated electron systems is a central challenge in condensed matter physics. Although such symmetry breaking phases have been studied in low-dimensional…

Transition metal dichalcogenides have recently emerged as promising two-dimensional materials with intriguing electronic properties. Existing calculations of intrinsic phonon-limited electronic transport so far have concentrated on the…

Materials Science · Physics 2017-10-05 Nicki Frank Hinsche , Kristian Sommer Thygesen

Bi2Se3 and Bi2Te3 are layered compounds of technological importance, being excellent thermoelectric materials as well as topological insulators. We report density functional theory calculations of the atomic, electronic and thermoelectric…

Materials Science · Physics 2013-08-08 Xin Luo , Michael B. Sullivan , Su Ying Quek

Rutile Sn$_{1-x}$Ge$_x$O$_{2}$ alloys are promising materials for high-power electronic applications due to their dopability and tunable ultra-wide band gaps. We use first-principles density functional theory and statistical mechanics to…

Materials Science · Physics 2026-01-21 Yann L. Müller , Alp Umut Kurbay , Xiao Zhang , Emmanouil Kioupakis , Anirudh Raju Natarajan

Intriguing properties of the misfit layered chalcogenide (LaS)$_{1.196}$VS$_2$ crystals were investigated by transport, optical measurements, angle-resolved photoemission (ARPES) and x-ray diffraction. Although no clear anomaly is found in…

Strongly Correlated Electrons · Physics 2012-11-01 V. Ta Phuoc , V. Brouet , B. Corraze , E. Janod , L. Cario

Interlayer coupling is strongly implicated in the complex electronic properties of 1$T$-TaS$_2$ , but the interplay between this and electronic correlations remains unresolved. Here, we employ angle-resolved photoemission spectroscopy…

Heterostructures of atomically-thin materials have attracted significant interest owing to their ability to host novel electronic properties fundamentally distinct from their constituent layers. In the case of graphene on boron nitride, the…

The LnSbTe (Ln = Lanthanides) family, like isostructural ZrSiS type compounds, has emerged as a fertile playground for exploring the interaction of electronic correlations and magnetic ordering with the nodal line band topology. Here, we…

We report first principles calculations of the structural, electronic, elastic and vibrational properties of the semiconducting orthorhombic ZnSb compound. We study also the intrinsic point defects in order to eventually improve the…

Materials Science · Physics 2012-07-09 Philippe Jund , Romain Viennois , Xiaoma Tao , Kinga Niedziolka , Jean-Claude Tedenac

Common belief is that the large band shifts observed in incommensurate misfit compounds, e.g. (LaSe)1.14(NbSe2)2, are due to interlayer charge transfer. In contrast, our analysis, based on both ARPES measurements and a specialized ab initio…

Transition metal dichalcogenides (TMD) monolayers, holding potential as good sunlight absorbers, are promising materials for next-generation optoelectronic devices. They may enable ultrathin photovoltaic(PV) devices thanks to their…

Materials Science · Physics 2022-11-28 C. Attaccalite , M. S. Prete , M. Palummo , O. Pulci

Orthorhombic arsenene was recently predicted as an indirect bandgap semiconductor. Here, we demonstrate that nanostructuring arsenene into nanoribbons can successfully transform the bandgap to be direct. It is found that direct bandgaps…

Mesoscale and Nanoscale Physics · Physics 2015-02-06 Z. Y. Zhang , H. N. Cao , J. C. Zhang , Y. H. Wang , D. S. Xue , M. S. Si

InGaN-based visible LEDs find commercial applications for solid-state lighting and displays, but lattice mismatch limits the thickness of InGaN quantum wells that can be grown on GaN with high crystalline quality. Since narrower wells…

Materials Science · Physics 2019-02-08 Logan Williams , Emmanouil Kioupakis

We study the mechanical and electronic properties of heterobilayers composed of black phosphorus (BP) on hexagonal boron nitride (hBN) and of blue phosphorus (\Pblue) on hBN by means of ab-intio density functional theory. Emphasis is put on…

Materials Science · Physics 2020-07-15 Baptiste Bienvenu , Hakim Amara , François Ducastelle , Lorenzo Sponza

Electronic nematicity, the breaking of the crystal lattice rotational symmetry by the electronic fluid, is a fascinating quantum state of matter. Recently, BaNi$_2$As$_2$ has emerged as a promising candidate for a novel type of nematicity…

Strongly Correlated Electrons · Physics 2022-12-13 M. Frachet , P. W. Wiecki , T. Lacmann , S. M. Souliou , K. Willa , C. Meingast , M. Merz , A. -A. Haghighirad , M. Le Tacon , A. E. Böhmer

Correlation effects on the electronic structure of half-metallic CrAs in zinc-blende structure are studied for different substrate lattice constants. Depending on the substrate the spectral weight of the non-quasiparticle states might be…

Strongly Correlated Electrons · Physics 2009-11-11 L. Chioncel , M. I. Katsnelson , G. A. de Wijs , R. A. de Groot , A. I. Lichtenstein