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Electronic structure and magnetic properties for iron deficient TlFe$_{2-x}$Se$_2$ compounds are studied by first-principles calculations. We find that for the case of $x=0.5$ with a Fe-vacancy ordered orthorhombic superstructure, the…

Superconductivity · Physics 2011-05-23 Chao Cao , Jianhui Dai

LuFe$_4$Ge$_2$ crystallizes in the ZrFe$_4$Si$_2$-type structure, hosting chains of Fe-tetrahedra giving rise to geometric frustration and low-dimensionality. The compound orders antiferromagnetically at around 36 K accompanied by a…

To ensure the practical application of atomically thin transition metal dichalcogenides, it is essential to characterize their structural stability under external stimuli such as electric fields and currents. Using vacancy monolayer islands…

Mesoscale and Nanoscale Physics · Physics 2018-04-04 Husong Zheng , Salvador Valtierra , Nana Ofori-Opoku , Chuanhui Chen , Lifei Sun , Liying Jiao , Kirk H. Bevan , Chenggang Tao

As a way to further improve the electronic properties of group V layered semiconductors, we propose to form in-layer 2D heterostructures of black phosphorus and grey arsenic. We use \textit{ab initio} density functional theory to optimize…

Mesoscale and Nanoscale Physics · Physics 2015-10-28 Zhen Zhu , Jie Guan , David Tomanek

Since there is both strong electron-phonon coupling during a ferroelectric/FE transition and superconducting/SC transition, it has been an important topic to explore superconductivity from the FE instability. Sn$_2$P$_2$Se$_6$ arouses broad…

Superconductivity · Physics 2024-02-27 He Zhang , Wei Zhong , Xiaohui Yu , Binbin Yue , Fang Hong

Vanadium dioxide (VO2) exhibits an insulator-to-metal transition accompanied by a structural transition near room temperature. This transition can be triggered by an ultrafast laser pulse. Exotic transient states, such as a metallic state…

In this letter we show that superconducting Fe1.01Se undergoes a structural transition at 90 K from a tetragonal to an orthorhombic phase but that non-superconducting Fe1.03Se does not. Further, high resolution electron microscopy study at…

Superconductivity · Physics 2009-08-11 T. M. McQueen , A. J. Williams , P. W. Stephens , J. Tao , Y. Zhu , V. Ksenofontov , F. Casper , C. Felser , R. J. Cava

The electronic structures and magnetic properties of strained monolayer MnPSe3 are investigated systematically by first-principles calculations. It is found that the magnetic ground state (GS) of monolayer MnPSe3 can be significantly…

Materials Science · Physics 2018-04-30 Qi Pei , Xiaocha Wang , Jijun Zou , Wenbo Mi

We have studied the pressure effect on electronic structures and magnetic orders of ternary iron selenide K$_{0.8}$Fe$_{1.6}$Se$_2$ by the first-principles electronic structure calculations. At low pressure, the compound is in the blocked…

Superconductivity · Physics 2011-09-15 Lei Chen , Xun-Wang Yan , Zhong-Yi Lu , Tao Xiang

1T'-TaTe2 exhibits an intriguing first-order structural phase transition at around 170 K. Understanding the electronic structural properties is a crucial way to comprehend the origin of the structural phase transition. We performed a…

Strongly Correlated Electrons · Physics 2022-02-23 T. C. Hu , Q. Wu , Z. X. Wang , L. Y. Shi , Q. M. Liu , L. Yue , S. J. Zhang , R. S. Li , X. Y. Zhou , S. X. Xu , D. Wu , T. Dong , N. L. Wang

Using polarization-resolved Raman spectroscopy, we investigate layer number, temperature, and magnetic field dependence of Raman spectra in one- to four-layer $\mathrm{CrI_{3}}$. Layer-number-dependent Raman spectra show that in the…

First-principles calculations are used to probe the effects of mechanical strain on the magnetic and optical properties of monolayer (ML) 2H-TaSe$_2$. A complex dependence of these physical properties on strain results in unexpected…

Materials Science · Physics 2019-08-21 Sugata Chowdhury , Jeffrey R. Simpson , T. L. Einstein , Angela R. Hight Walker

Electronic states under pressure exhibit unconventional spin and charge dynamics that provide a powerful route to uncover exotic phases in quantum materials. Here, we present the structural, magnetic, and electronic evolution of…

Transition metal monochalcogenides comprise a class of two-dimensional materials with electronic band gaps that are highly sensitive to material thickness and chemical composition. Here, we explore the tunability of the electronic…

Mechanical deformations, either spontaneously occurring during sample preparation or purposely induced in their nanoscale manipulation, drastically affect the electronic and optical properties of transition metal dichalcogenide monolayers.…

Materials Science · Physics 2024-02-16 Stefan Velja , Jannis Krumland , Caterina Cocchi

Two-dimensional (2D) Fe-chalcogenides with rich structures, magnetisms and superconductivities are highly desirable to reveal the torturous transition mechanism and explore their potential applications in spintronics and nanoelectronics.…

The monolayer WSe2 is interesting and important for future application in nanoelectronics, spintronics and valleytronics devices, because it has the largest spin splitting and longest valley coherence time among all the known monolayer…

Two-dimensional (2D) magnetoelectric multiferroics are promising multifunctional materials for miniaturized logic and memory devices. Herein, we explore the effectiveness of strain-engineering for tuning the properties of a recently…

Materials Science · Physics 2021-02-24 Akshay Mahajan , Somnath Bhowmick

Monolayer V2O3, a two-dimensional magnetic topological insulator with intrinsic ferromagnetic order and a nontrivial band gap, offers a promising platform for realizing quantum anomalous Hall (QAH) states. Using first-principles density…

Materials Science · Physics 2025-09-30 Zheng Wang , Jingshen Yan , Shu-Shen Lyu , Kaixuan Chen

Layered transition metal dichalcogenides (TMDs) offer many attractive features for next-generation low-dimensional device geometries. Due to the practical and fabrication challenges related to in situ methods, the atomistic dynamics that…

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