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The electronic structure of electron-doped polycrystalline Mg$_{1-x}$Al$_{x}$(B$_{1-y}$C$_{y}$)$_2$ was examined by electron energy-loss spectroscopy (EELS) in a scanning transmission electron microscope (STEM) and first-principle…

Superconductivity · Physics 2007-05-23 R. F. Klie , J. C. Zheng , Y. Zhu , A. J. Zambano , L. D. Cooley

The effects of twin boundaries (TBs) on the complex interaction between magnetism and superconductivity in slightly electron-doped Ba(Ca)(FeAs)$_2$ superconductors are investigated. The spatial distributions of the magnetic, superconducting…

Superconductivity · Physics 2012-11-14 Bo Li , Jian Li , Kevin E. Bassler , C. S. Ting

Single crystal neutron diffraction is used to investigate the magnetic and structural phase diagram of the electron doped superconductor Ba(Fe$_{1-x}$Co$_x$)$_2$As$_2$. Heat capacity and resistivity measurements have demonstrated that Co…

WTe$_2$ is a multifunctional quantum material exhibiting numerous emergent phases in which tuning of the carrier density plays an important role. Here we demonstrate two non-monotonic changes in the electronic structure of WTe$_2$ upon…

We present detailed electronic structure calculations for CaFe2As2. We investigate in particular the `collapsed' tetragonal and orthorhombic regions of the temperature-pressure phase diagram and find properties that distinguish CaFe2As2…

Strongly Correlated Electrons · Physics 2009-03-27 D. A. Tompsett , G. G. Lonzarich

We report electronic structure calculations for BaTi$_2$Sb$_2$O and discuss the results in relation to the observed superconductivity of this material when hole doped with Na. The Fermi surface shows several sheets. These include a nested…

Superconductivity · Physics 2012-12-10 D. J. Singh

Angle-resolved photoemission spectroscopy (ARPES) reveals effects of electron doping, which is realized by Co and Ni substitution for Fe in FeTe$_{1-y}$Se$_{y}$ (y$\sim$0.35) superconductor. The data show consistent band shifts as well as…

Superconductivity · Physics 2019-10-29 M. Rosmus , R. Kurleto , D. J. Gawryluk , J. Goraus , M. Z. Cieplak , P. Starowicz

We report density functional calculations of the electronic structure and Fermi surface of the BaFe$_2$As$_2$ and LiFeAs phases including doping via the virtual crystal approximation. The results show that contrary to a rigid band picture,…

Superconductivity · Physics 2008-09-19 D. J. Singh

This paper presents the comparative study of LDA calculated electronic structure of new isostructural to iron based systems superconductors (Sr,Ca)Pd2As2 with Tc about 1K and similar but structurally different system BaPd2As2. Despite…

Superconductivity · Physics 2014-05-09 I. A. Nekrasov , M. V. Sadovskii

The electronic structure and the physical properties of quantum materials can be significantly altered by charge carrier doping and magnetic state transition. Here we report a discovery of a giant and reversible electronic structure…

Dome-shape superconductivity phase diagram can commonly be observed in cuprate and iron-based systems via tuning parameters such as charge carrier doping, pressure, bond angle, and etc. We report doping electrons from transition-metal…

Superconductivity · Physics 2016-04-12 W. Zhou , X. Z. Xing , H. J. Zhao , Z. X. Shi , K. Yamaura

Starting from the simplified analytic model of electronic spectrum of iron - pnictogen (chalcogen) high - temperature superconductors close to the Fermi level, we discuss the influence of antiferromagneting (AFM)scattering both for…

Superconductivity · Physics 2015-05-18 E. Z. Kuchinskii , M. V. Sadovskii

Fe-based superconductors have drawn much attention during the last decade due to the finding of superconductivity in materials containing the magnetic element, Fe, and the coexistence of superconductivity & magnetism. Extensive study of the…

Superconductivity · Physics 2015-01-07 Kalobaran Maiti

To understand newly discovered superconductivity in Fe--based systems, we investigate electronic structure and magnetic properties of Fe$_{1+x}$Te using first--principles density functional calculations. While the undoped FeTe has the same…

Superconductivity · Physics 2009-08-05 Myung Joon Han , Sergey Y. Savrasov

Infrared reflectivity measurements on 122 iron-pnictides reveal the existence of two electronic subsystems. The one gapped due to the spin-density-wave transition in the parent materials, such as EuFe$_2$As$_{2}$, is responsible for…

Superconductivity · Physics 2010-03-31 D. Wu , N. Barisic , P. Kallina , A. Faridian , B. Gorshunov , N. Drichko , L. J. Li , X. Lin , G. H. Cao , Z. A. Xu , N. L. Wang , M. Dressel

Through a systematic high resolution angle-resolved photoemission study of the iron pnictide compounds (Ba,Sr)Fe$_2$As$_2$, we show that the electronic structures of these compounds are significantly reconstructed across the spin density…

In strongly correlated transition metal dichalcogenides, an intricate interplay of polaronic distortions, stacking arrangement, and electronic correlations determines the nature of the insulating state. Here, we study the response of the…

We review neutron scattering investigations of the crystal structures, magnetic structures, and spin dynamics of the iron-based RFe(As,P)O (R=La, Ce, Pr, Nd), (Ba,Sr,Ca)Fe2As2, and Fe1+x(Te-Se) systems. On cooling from room temperature all…

Superconductivity · Physics 2009-05-20 Jeffrey W. Lynn , Pengcheng Dai

We investigate the magnetic polarization of the Ir $5d$ dopant states in the pnictide superconductor Ba(Fe$_{1-x}$Ir$_x$)$_2$As$_2$ with $x=0.027(2)$ using Ir $L_3$ edge x-ray resonant magnetic scattering (XRMS). Despite the fact that…

Strongly Correlated Electrons · Physics 2012-04-26 M. P. M. Dean , M. G. Kim , A. Kreyssig , J. W. Kim , X. Liu , P. J. Ryan , A. Thaler , S. L. Bud'ko , W. Strassheim , P. C. Canfield , J. P. Hill , A. I. Goldman

The recent discovery of iron ferropnictide superconductors has received intensive concerns on magnetic involved superconductors. Prominent features of ferropnictide superconductors are becoming apparent: the parent compounds exhibit…

Superconductivity · Physics 2019-08-19 Junjie Wu , Jungfu Lin , Xiancheng Wang , Qingqing Liu , Jinglong Zhu , Yuming Xiao , Paul Chow , Changqing Jin