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Alloying elements play an important role in the design of plasma facing materials with good comprehensive properties. Based on first-principles calculations, the stability of alloying element W and its interaction with vacancy defects in…

Materials Science · Physics 2019-11-01 Yini Lv , Kaige Hu , Shulong Wen , Min Pan , Zheng Huang , Zelin Cao , Yong Zhao

Tungsten (W) is widely considered as the most promising plasma facing material (PFM), which will be used in nuclear fusion devices. Due to the transmutation reaction caused by the fusion neutron irradiation, transmutation elements (such as…

Materials Science · Physics 2019-03-08 Qiang Zhao , Zheng Zhang , Mei Huang , Xiaoping Ouyang

Understanding how properties of materials change due to nuclear transmutations is a major challenge for the design of structural components for a fusion power plant. In this study, by combining a first-principles matrix Hamiltonian approach…

Accurately quantifying the transmutation rate of tungsten (W) under neutron irradiation is a necessary requirement in the assessment of its performance as an armour material in a fusion power plant. The usual approach of calculating average…

Instrumentation and Detectors · Physics 2017-03-28 M. R. Gilbert , J. -Ch. Sublet , S. L. Dudarev

Multi-principal element alloys (MPEAs) continue to garner interest as structural and plasma-facing materials due to their structure stability and increased resistance to radiation damage. Despite sensitivity of mechanical behavior to…

Materials Science · Physics 2022-04-29 Ankit Roy , Prashant Singh , Ganesh Balasubramanian , Duane D. Johnson

Tungsten (W) is the leading candidate material for plasma-facing components in fusion reactors, yet its upper operational temperature is limited by premature grain growth and recrystallization processes. Irradiation adds further…

Materials Science · Physics 2026-02-23 Jinxin Yu , Sicong He , Giacomo Po , Jason R. Trelewicz , Timothy J. Rupert , Jaime Marian

Predicting diffusion in chemically complex alloys remains challenging due to the strong dependence of migration barriers on local atomic environments. Here, we develop a first-principles-informed framework that directly learns…

Materials Science · Physics 2026-05-25 Jacob Jeffries , Brianna Sebastian-Olazabal , Enrique Martinez

The accumulation and growth of vacancy clusters under irradiation is a pivotal degradation mode for structural materials in extreme environments. Even tungsten undergoes rapid defect coarsening compromising its integrity. Here we show a…

We performed molecular dynamics simulations of coalescence of two vacancies in a tungsten (W) crystal to elucidate the effect of temperature and hydrogen atoms. Simulations were performed for two types of vacancy structures, $\mathrm{V}_9 +…

Materials Science · Physics 2024-07-03 Sotaro Tsuru , Hiroaki Nakamura , Yuki Goto , Miyuki Yajima , Seiki Saito , Shunsuke Usami

Substitutional tungsten doping of VO$_{\text{2}}$ thin films and its effect on the metal-to-insulator transition are investigated by means of X-ray diffraction, Cs-corrected scanning transmission electron microscope (STEM) and ab-initio…

Materials Science · Physics 2014-12-08 Xiaoyan Li , Alexandre Gloter , Alberto Zobelli , Hui Gu , Xun Cao , Ping Jin , Christian Colliex

In some topological insulators, such as graphene and WTe$_2$, band inversion originates from chemical bonding and space group symmetry, in contrast to materials such as Bi$_2$Se$_3$, where the band inversion derives from relativistic…

Materials Science · Physics 2020-07-15 Lukas Muechler , Wei Hu , Chao Yang , Lin Lin , Roberto Car

Atomic-scale calculations indicate that both stress effects and chemical binding contribute to the redistribution of solute in the presence of vacancy clusters in magnesium alloys. As the size of the vacancy cluster increases, chemical…

Materials Science · Physics 2021-12-08 Peng Yi , Taisuke Sasaki , Suhas Eswarappa Prameela , Timothy P. Weihs , Michael L. Falk

W and W-based high-entropy alloys (HEAs) are promising candidates for plasma-facing materials in fusion reactors. While irradiation studies on W have revealed a tendency for helium (He) bubble formation and radiation-induced defects,…

Materials Science · Physics 2025-11-04 Amin Esfandiarpour , Damian Kalita , Zbigniew Koziol , Mikko Alava

One of the challenges in fusion reactors is the discovery of plasma facing materials capable of withstanding extreme conditions, such as radiation damage and high heat flux. Development of fusion materials can be a daunting task since vast…

Materials Science · Physics 2022-10-19 Haechan Jo , Sanghun Park , Daegun You , Sooran Kim , Dongwoo Lee

The rare-earths are known to have intriguing changes of the valence, depending on chemical surrounding or geometry. Here we make predictions from theory that combines density functional theory with atomic multiplet-theory, on the transition…

Atomic and Molecular Clusters · Physics 2016-06-01 L. Peters , I. Di Marco , M. S. Litsarev , A. Delin. M. I. Katsnelson , A. Kirilyuk , B. Johansson , B. Sanyal , O. Eriksson

The formation pathways for gravitational-wave merger sources are predicted to include common envelope (CE) evolution. Observations of high-mass post-common envelope binaries suggest that energy transfer to the envelope during the CE phase…

Solar and Stellar Astrophysics · Physics 2022-08-31 E. C. Wilson , J. Nordhaus

With the first principles calculations of H and He induced energetics change we demonstrate that in W the accumulation of H (up to 9) and He (up to 4) in a single vacancy (V) surprisingly reduce the formation energy of first and second…

Materials Science · Physics 2013-05-03 Yu-Wei You , Xiang-Shan Kong , Q. F. Fang , Jun-Ling Chen , G. -N. Luo , C. S. Liu , B. C. Pan , Y. Daid

We have computed the variation of the vacancy formation energy with pressure for Ta. Total energy calculations were performed for 16 and 54 atom supercells using a mixed basis pseudopotential method which uses pseudo-atomic orbitals and low…

Materials Science · Physics 2007-05-23 Sonali Mukherjee , R. E. Cohen , Oguz Gulseren

The resonance energy and the transition rate of atoms, molecules and solids were understood as their intrinsic properties in classical electromagnetism. With the development of quantum electrodynamics, it is realized that these quantities…

Mesoscale and Nanoscale Physics · Physics 2020-05-07 Jason Horng , Yu-Hsun Chou , Tsu-chi Chang , Chu-Yuan Hsu , Tien-chang Lu , Hui Deng

Composition, atomic structure, and electronic properties of TM$_x$Mg$_y$O$_z$ clusters (TM = Cr, Ni, Fe, Co, $x+y \leq 3$) at realistic temperature $T$ and partial oxygen pressure $p_{\textrm{O}_2}$ conditions are explored using the {\em ab…

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