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In this paper we discuss the application of current it ab initio computer simulation techniques to hydrogenated amorphous silicon (a-Si:H). We begin by discussing thermal fluctuation in the number of coordination defects in the material,…

Materials Science · Physics 2009-11-13 D. A. Drabold , T. A. Abtew , F. Inam , Y. Pan

We study by means of first-principles pseudopotential method the coordination defects in a-Si and a-Si:H, also in their formation and their evolution upon hydrogen interaction. An accurate analysis of the valence charge distribution and of…

Materials Science · Physics 2009-10-31 M. Peressi , M. Fornari , S. de Gironcoli , L. De Santis , A. Baldereschi

Elemental substitution is a proven method of Fermi level tuning in topological insulators, which is needed for device applications. Through static and time resolved photoemission, we show that in MnBi$_2$Te$_4$, elemental substitution of Bi…

Materials Science · Physics 2022-06-30 Daniel Nevola , Kevin F. Garrity , Nader Zaki , Jiaqiang Yan , Hu Miao , Sugata Chowdhury , Peter D. Johnson

Moisture- and temperature-activated corrosion of metal fingers, mechanical stress induced delamination, and failure of solder bonds rank among the leading failure mechanisms of solar modules. The physics of moisture ingress, diffusion and…

Applied Physics · Physics 2018-08-20 Reza Asadpour , Xingshu Sun , Muhammad. Ashraful Alam

We introduce a method to calculate defect-assisted Shockley-Read-Hall (SRH) recombination rates in imperfect semiconductors from first principles. The method accounts for the steady state recombination dynamics under given non-equilibrium…

Materials Science · Physics 2025-07-25 Jiban Kangsabanik , Kristian S. Thygesen

The creation of point defects in the crystal lattices of various semiconductors by subthreshold events has been reported on by a number of groups. These observations have been made in great detail using sensitive electrical techniques but…

Materials Science · Physics 2017-11-22 Sergio M. M. Coelho , Juan F. R. Archilla , F. Danie Auret , Jackie M. Nel

We measure charge transport in hydrogenated amorphous silicon (a-Si:H) using a nanometer scale silicon MOSFET as a charge sensor. This charge detection technique makes possible the measurement of extremely large resistances. At high…

Mesoscale and Nanoscale Physics · Physics 2015-05-14 K. MacLean , T. S. Mentzel , M. A. Kastner

The integration of III-V on silicon is still a hot topic as it will open up a way to co-integrate Si CMOS logic with photonic vices. To reach this aim, several hurdles should be solved, and more particularly the generation of antiphase…

Defects in crystalline silicon consisting of a silicon self-interstitial atom and one, two, three, or four hydrogen atoms are studied within density-functional theory (DFT). We search for low-energy defects by starting from an ensemble of…

Materials Science · Physics 2010-02-11 Andrew J. Morris , Chris J. Pickard , R. J. Needs

It is known that silicon is an indirect band gap material, reducing its efficiency in photovoltaic applications. Using surface plasmons in metallic nanoparticles embedded in a solar cell has recently been proposed as a way to increase the…

Other Condensed Matter · Physics 2009-11-13 Martin Kirkengen , Joakim Bergli , Yuri M. Galperin

Formation energies of charged point defects in semiconductors are calculated using periodic supercells, which entail a divergence arising from long-range Coulombic interactions. The divergence is typically removed by the so-called jellium…

Materials Science · Physics 2019-11-27 Andrew O'Hara , Blair R. Tuttle , Xiao-Guang Zhang , Sokrates T. Pantelides

We employ ab initio molecular dynamics to simulate the response of hydrogenated amorphous silicon to light exposure (Staebler-Wronski effect). We obtain improved microscopic understanding of PV operation, compute the motion of H atoms, and…

Materials Science · Physics 2009-11-11 T. A. Abtew , D. A. Drabold

The enhancement of the fill factor in the current generation of perovskite solar cells is the key for further efficiency improvement. Thus, methods to quantify the fill factor losses are urgently needed. A classical method to quantify Ohmic…

Applied Physics · Physics 2022-07-07 David Grabowski , Zhifa Liu , Gunnar Schöpe , Uwe Rau , Thomas Kirchartz

Intrinsic hydrogenated amorphous silicon films can provide outstanding surface passivation of crystalline silicon wafer surfaces. This quality of Intrinsic hydrogenated amorphous silicon makes it valuable in heterojunction with intrinsic…

Applied Physics · Physics 2018-12-21 Rahul Goyal , Sachin Kumar

By application of the ac admittance spectroscopy method, the defect state energy distributions were determined in CdTe incorporated in thin film solar cell structures concluded on ZnO, ZnSe, and ZnS buffer layers. Together with the…

Materials Science · Physics 2015-10-30 Y. G. Fedorenko , J. D. Major , A. Pressman , L. J. Phillips , K. Durose

A phenomenological model was developed to explain quantitatively, without free parameters, the production of primary defects in silicon after particle irradiation, the kinetics of their evolution toward equilibrium and their influence on…

High Energy Physics - Phenomenology · Physics 2009-11-07 Ionel Lazanu , Sorina Lazanu

In neutral dense electron-hole (e-h) systems at low temperatures, theory predicts Cooper-pair-like excitons at the Fermi energy and a BCS-like exciton condensation. Optical excitation allows creating e-h systems with the densities…

Quantum Gases · Physics 2023-06-30 D. J. Choksy , E. A. Szwed , L. V. Butov , K. W. Baldwin , L. N. Pfeiffer

An H atom inserted into hydrogen monolayer on the Si(100)-2x1 surface has been studied using the density functional theory. Hydrogen-induced defects were considered in their neutral, negative, and positive charge states. It was found that…

Mesoscale and Nanoscale Physics · Physics 2020-10-28 T. V. Pavlova

Three-dimensional topological semimetals host a range of interesting quantum phenomena related to band crossing that give rise to Dirac or Weyl fermions, and can be potentially engineered into novel quantum devices. Harvesting the full…

It is known from density functional theory (DFT) calculations that RhSi has a multifold degenerate Dirac point at the Fermi energy, with the dominant states in the low-energy region displaying mostly Rh $d$ character. Using DFT+U, we…

Strongly Correlated Electrons · Physics 2024-03-29 Krishnendu Patra , Viktor Christiansson , Ferdi Aryasetiawan , Priya Mahadevan