中文
相关论文

相关论文: Double-Q spin-density wave in iron arsenide superc…

200 篇论文

The compound EuFe(2-x)Co(x)As2 was investigated by means of the 57Fe and 151Eu Moessbauer spectroscopy versus temperature (4.2 - 300 K) for x=0 (parent), x=0.34 - 0.39 (superconductor) and x=0.58 (overdoped). It was found that spin density…

超导电性 · 物理学 2011-11-08 A. Blachowski , K. Ruebenbauer , J. Zukrowski , Z. Bukowski , K. Rogacki , P. J. W. Moll , J. Karpinski

At ambient pressure and zero field, tetragonal CeAuSb$_{2}$ hosts stripe antiferromagnetic order at $T_{N} = 6.3$ K. Here we first show via bulk thermodynamic probes and x-ray diffraction measurements that this magnetic order is connected…

We present a comprehensive study of the spin excitations - as measured by the dynamical spin structure factor $S(q,\omega)$ - of the so-called block-magnetic state of low-dimensional orbital-selective Mott insulators. We realize this state…

强关联电子 · 物理学 2020-09-17 J. Herbrych , G. Alvarez , A. Moreo , E. Dagotto

The main features in iron-based superconductors would be (i) the orthorhombic transition accompanied by remarkable softening of shear modulus, (ii) high-Tc superconductivity close to the orthorhombic phase, and (iii) nematic transition in…

强关联电子 · 物理学 2015-06-04 H. Kontani , Y. Inoue , T. Saito , Y. Yamakawa , S. Onari

High temperature superconductivity in iron pnictides and chalcogenides emerges when a magnetic phase is suppressed. The multi-orbital character and the strength of correlations underlie this complex phenomenology, involving magnetic…

强关联电子 · 物理学 2016-02-10 E. Bascones , B. Valenzuela , M. J. Calderon

High-temperature superconductivity in the iron-based materials emerges from, or sometimes coexists with, their metallic or insulating parent compound states. This is surprising since these undoped states display dramatically different…

超导电性 · 物理学 2012-10-05 Pengcheng Dai , Jiangping Hu , Elbio Dagotto

Rhombohedral graphene multilayers host various broken-symmetry metallic phases as well as superconductors whose pairing mechanism and order parameter symmetry remain unsettled. Strikingly, experiments have revealed prominent new…

超导电性 · 物理学 2025-07-08 Zhiyu Dong , Étienne Lantagne-Hurtubise , Jason Alicea

We performed nuclear magnetic resonance (NMR) measurements to investigate the evolution of spin-density-wave (SDW) and superconducting (SC) states upon electron doping in CaFe_{1-x}Co_{x}AsF, which exhibits an intermediate phase diagram…

超导电性 · 物理学 2012-10-04 S. Tsutsumi , N. Fujiwara , S. Matsuishi , H. Hosono

The recent discovery of superconductivity under high pressure in the two-leg ladder compound BaFe$_2$S$_3$ [H. Takahashi et al., Nature Materials 14, 1008 (2015)] opens a broad avenue of research, because it represents the first report of…

We analyze the origin of superconductivity in a ferromagnetically ordered state of multi-layer graphene systems placed in proximity to WSe$_2$. We model these materials by a two-valley system of interacting fermions with small pockets and…

超导电性 · 物理学 2025-07-02 Zachary M Raines , Andrey V Chubukov

To examine the role of magnetism in superconductivity of iron-based superconductors, we first present first-principles optical calculations on three representative parent compounds: LaFeAsO, BaFe2As2 and LiFeAs. Both nonmagnetic (NM) and…

超导电性 · 物理学 2012-10-09 Hai Wang

We studied the temperature-pressure phase diagram of EuFe2As2 by measurements of the electrical resistivity. The antiferromagnetic spin-density-wave transition at T_0 associated with the FeAs-layers is continuously suppressed with…

The compound Ba3HoRu2O9 magnetically orders at 50 K (TN1) followed by another complex magnetic ordering at 10.2 K (TN2). The 2nd magnetic phase transition was characterized by the co-existence of two competing magnetic ground states…

强关联电子 · 物理学 2024-06-18 E. Kushwaha , G. Roy , M. Kumar , A. M. dos Santos , S. Ghosh , D. T. Adroja , V. Caignaert , O. Perez , A. Pautrat , T. Basu

When passing through a phase transition, electronic system saves energy by opening energy gaps at the Fermi level. Delineating the energy gap anisotropy provides insights into the origin of the interactions that drive the phase transition.…

超导电性 · 物理学 2020-07-21 T. T. Han , L. Chen , C. Cai , Y. D. Wang , Z. G. Wang , Z. M. Xin , Y. Zhang

In order to investigate the relationship between the so-called stripe correlations and the high-Tc superconductivity, we have carried out magnetic susceptibility and zero-field muon-spin-relaxation measurements in partially Fe-substituted…

超导电性 · 物理学 2016-11-23 Kensuke M. Suzuki , Tadashi Adachi , Hidetaka Sato , Isao Watanabe , Yoji Koike

We report neutron scattering and transport measurements on semiconducting Rb$_{0.8}$Fe$_{1.5}$S$_2$, a compound isostructural and isoelectronic to the well-studied $A_{0.8}$Fe$_{y}$Se$_2 (A=$ K, Rb, Cs, Tl/K) superconducting systems. Both…

The normal state and superconducting properties are investigated in the phase diagram of K_xSr_{1-x}Fe_2As_2 for 0<x<1. The ground state upper critical field, H_{c2}(0), is extrapolated from magnetic field dependent resistivity…

超导电性 · 物理学 2009-03-03 B. Lv , M. Gooch , B. Lorenz , F. Chen , A. M. Guloy , C. W. Chu

Evidence for correlated insulating and superconducting phases around regions of high density of states was reported in the strongly spin-orbit coupled van-der Waals material twisted tungsten diselenide (tWSe$_2$). We investigate their…

强关联电子 · 物理学 2023-03-15 Lennart Klebl , Ammon Fischer , Laura Classen , Michael M. Scherer , Dante M. Kennes

Unconventional superconductors are often characterized by numerous competing and even intertwined orders in their phase diagrams. In particular, the electronic nematic phases, which spontaneously break rotational symmetry and often…

Identifying and characterizing the parent phases of iron-based superconductors is an important step towards understanding the mechanism for their high temperature superconductivity. We present an investigation into the magnetic interactions…

强关联电子 · 物理学 2015-06-18 E. E. McCabe , C. Stock , E. E. Rodriguez , A. S. Wills , J. W. Taylor , J. S. O. Evans