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相关论文: Density functional study of orbital-selective magn…

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In this paper we explore the magnetic and orbital properties closely related to a tetragonal-orthorhombic structural phase transition in iron pnictides based on both two- and five-orbital Hubbard models. The electron-lattice coupling, which…

超导电性 · 物理学 2015-05-27 Da-Yong Liu , Ya-Min Quan , Dong-Meng Chen , Liang-Jian Zou , Hai-Qing Lin

The twin issues of the nature of the normal state and competing order(s) in the iron arsenides are central to understanding their unconventional, high-Tc superconductivity. We use a combination of transport anisotropy measurements on…

强关联电子 · 物理学 2015-10-16 S. D. Das , M. S. Laad , L. Craco , J. Gillett , V. Tripathi , S. E. Sebastian

Fe-doped III-V ferromagnetic semiconductors (FMSs) such as (In,Fe)As, (Ga,Fe)Sb, (In,Fe)Sb, and (Al,Fe)Sb are promising materials for spintronic device applications because of the availability of both n- and p-type materials and the high…

We study how strain affects orbital ordering and magnetism at the interface between SrMnO$_3$ and LaMnO$_3$ from density-functional calculations and interpret the basic results in terms of a three-site Mn-O-Mn model. Magnetic interaction…

材料科学 · 物理学 2010-03-10 B. R. K. Nanda , S. Satpathy

The origin of spontaneous electronic nematic ordering provides important information for understanding iron-based superconductors. Here, we analyze a scenario where the $d_{xy}$ orbital strongly contributes to nematic ordering in FeSe. We…

超导电性 · 物理学 2021-06-28 Luke C. Rhodes , Jakob Böker , Marvin A. Müller , Matthias Eschrig , Ilya M. Eremin

The role of orbital differentiation on the emergence of superconductivity in the Fe-based superconductors remains an open question to the scientific community. In this investigation, we employ a suitable microscopic spin probe technique,…

超导电性 · 物理学 2014-02-11 P. F. S. Rosa , C. Adriano , T. M. Garitezi , T. Grant , Z. Fisk , R. R. Urbano , P. G. Pagliuso

We demonstrated experimentally a direct way to probe a hidden propensity to the formation of spin density wave (SDW) in a non-magnetic metal with strong Fermi surface nesting. Substituting Fe for a tiny amount of Cu (1%) induced an…

The electronic structures of FeAs-compounds strongly depend on the Fe-As bonding, which can not be described successfully by the local density approximation (LDA). Treating the multi-orbital fluctuations from $ab$-$initio$ by LDA+Gutzwiller…

超导电性 · 物理学 2010-01-26 G. T. Wang , Y. M. Qian , G. Xu , X. Dai , Z. Fang

Superconductivity arises in the layered iron-pnictide compounds when magnetic long range order disappears. We use first principles density functional methods to study magnetic arrangements that may compete with long range order near the…

超导电性 · 物理学 2009-11-03 Z. P. Yin , W. E. Pickett

We used the proximity effect as a tool to achieve an ideal (barrier - free) NS boundary for quantitative evaluation of transport phenomena that accompany converting dissipative current into supercurrent in NS systems with unconventional…

超导电性 · 物理学 2015-06-15 Yu. N. Chiang , M. O. Dzuba , O. G. Shevchenko , A. N. Vasiliev

This paper explains the multi-orbital band structures and itinerant magnetism of the iron-pnictide and chalcogenides. We first describe the generic band structure of an isolated FeAs layer. Use of its Abelian glide-mirror group allows us to…

超导电性 · 物理学 2011-01-18 Ole Krogh Andersen , Lilia Boeri

The normal state in iron chalcogenides is metallic but highly unusual, with orbital and spin degrees of freedom partially itinerant or localized depending on temperature, leading to many unusual features. In this work, we report on the…

超导电性 · 物理学 2024-04-05 Marta Z. Cieplak , I. Zajcewa , A. Lynnyk , K. M. Kosyl , D. J. Gawryluk

The fluctuations of the magnetic order parameter, or longitudinal spin excitations, are investigated theoretically in the ferromagnetic Fe and Ni as well as in the antiferromagnetic phase of the pnictide superconductor FeSe. The charge and…

强关联电子 · 物理学 2020-07-01 Paweł Buczek , Nadine Buczek , Giovanni Vignale , Arthur Ernst

Density functional studies of 26K superconducting LaFeAs(O,F) are reported. We find a low carrier density, high density of states, $N(E_F)$ and modest phonon frequencies relative to $T_c$. The high $N(E_F)$ leads to proximity to itinerant…

超导电性 · 物理学 2008-06-13 D. J. Singh , M. H. Du

We have carried out first principles all-electron calculations of the (001)-projected 2D electron momentum density and the directional Compton profiles along the [100], [001] and [110] directions in the Fe-based superconductor LaOFeAs…

强关联电子 · 物理学 2010-02-08 Y. J. Wang , Hsin Lin , B. Barbiellini , P. E. Mijnarends , S. Kaprzyk , W. Al-Sawai , R. S. Markiewicz , A. Bansil

A clear physics picture of TbBaCo$_{2}$O$_{5.5}$ is revealed on the basis of density functional theory calculations. An antiferromagnetic (AFM) superexchange coupling between the almost high-spin Co$^{3+}$ ions competes with a ferromagnetic…

材料科学 · 物理学 2009-11-07 Hua Wu

Electronic nematicity in Fe-based superconductors is manifested by spontaneous rotational symmetry breaking and the formation of nematic domains with mutually orthogonal directions of $d_{xz}$/$d_{yz}$ orbital anisotropy. However, its…

Theoretical calculations are performed to understand the electronic structure and magnetic properties of CuFe$_2$Ge$_2$. The band structure reveal large electron density $N(E_F)$ at the Fermi level suggesting strong itinerant character of…

超导电性 · 物理学 2015-04-01 K. V. Shanavas , David J. Singh

Electronic correlation is of fundamental importance to high temperature superconductivity. Iron-based superconductors are believed to possess moderate correlation strength, which combined with their multi-orbital nature makes them a…

The electronic energy structures and magnetic properties of layered superconductors $R$Ni$_2$B$_2$C, $R$Fe$_4$Al$_8$ and FeSe are systematically studied, by using the density functional theory (DFT). The calculations allowed us to reveal a…

超导电性 · 物理学 2014-04-04 G. E. Grechnev , A. V. Logosha , A. A. Lyogenkaya , A. G. Grechnev , A. V. Fedorchenko