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In the iron-based superconductors, both nematic and magnetic fluctuations are expected to enhance superconductivity and may originate from a quantum critical point hidden beneath the superconducting dome. The behavior of the…

Strongly Correlated Electrons · Physics 2019-10-02 J. A. W. Straquadine , J. C. Palmstrom , P. Walmsley , A. T. Hristov , F. Weickert , F. F. Balakirev , M. Jaime , R. McDonald , I. R. Fisher

Spin fluctuations are considered to be one of the candidates that drive a sign-reversed s^{\pm} superconducting state in the iron pnictides. In the magnetic scenario, whether the spin fluctuation spectrum exhibits certain unique fine…

Superconductivity · Physics 2010-10-25 Junhua Zhang , Rastko Sknepnek , Jörg Schmalian

Understanding the nature of the electronic nematic phase in iron pnictide superconductors is important for elucidating its impact on high-temperature superconductivity. Here we use transport and inelastic neutron scattering to study spin…

Strain applied to a condensed-matter system can be used to engineer its excitation spectrum via artificial gauge fields, or it may tune the system through transitions between different phases. Here we demonstrate that strain tuning of the…

Strongly Correlated Electrons · Physics 2022-03-28 Mary Madelynn Nayga , Matthias Vojta

The underdoped phase diagram of the iron-based superconductors exemplifies the complexity common to many correlated materials. Indeed, multiple ordered states that break different symmetries but display comparable transition temperatures…

Superconductivity · Physics 2019-07-23 Morten H. Christensen , Jian Kang , Rafael M. Fernandes

We expose the theoretical mechanisms underlying disorder-induced nematicity in systems exhibiting strong fluctuations or ordering in the nematic channel. Our analysis consists of a symmetry-based Ginzburg-Landau approach and associated…

Superconductivity · Physics 2019-08-23 Daniel Steffensen , Panagiotis Kotetes , Indranil Paul , Brian M. Andersen

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…

The interplay of structural and electronic phases in iron-based superconductors is a central theme in the search for the superconducting pairing mechanism. While electronic nematicity, defined as the breaking of four-fold symmetry triggered…

We show that the interference between scattering by impurities and by critical spin fluctuations gives rise to anisotropic transport in the Ising-nematic state of the iron pnictides. The effect is closely related to the non-Fermi liquid…

Strongly Correlated Electrons · Physics 2015-05-28 Rafael M. Fernandes , Elihu Abrahams , Jörg Schmalian

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…

Strongly Correlated Electrons · Physics 2015-06-04 H. Kontani , Y. Inoue , T. Saito , Y. Yamakawa , S. Onari

The nematic state of the iron-based superconductors is studied in the undoped limit of the three-orbital ($xz$, $yz$, $xy$) spin-fermion model via the introduction of lattice degrees of freedom. Monte Carlo simulations show that in order to…

Superconductivity · Physics 2014-05-27 Shuhua Liang , Adriana Moreo , Elbio Dagotto

TmVO$_4$ exhibits ferroquadrupolar order below 2.15 K with a well-isolated non-Kramers ground state doublet, and is a model system to understand Ising nematic order. We present $^{51}$V nuclear magnetic resonance data as a function of field…

Strongly Correlated Electrons · Physics 2021-12-02 Z. Wang , I. Vinograd , Z. Mei , P. Menegasso , D. Garcia , P. Massat , I. R. Fisher , N. J. Curro

In this paper we study an effective model for the normal state of iron-based superconductors. It has separate, but interacting itinerant and localized degrees of freedom, originating from the d_xz and d_yz, and from d_xy iron orbitals…

Strongly Correlated Electrons · Physics 2013-05-22 Valentin Stanev , Peter B. Littlewood

In copper-oxide and iron-based high temperature (high-$T_{\rm c}$) superconductors, many physical properties exhibit in-plane anisotropy, which is believed to be caused by a rotational symmetry-breaking nematic order, whose origin and its…

Superconductivity · Physics 2016-03-23 R. Zhou , L. Y. Xing , X. C. Wang , C. Q. Jin , Guo-qing Zheng

Quantum criticality in iron pnictides involves both the nematic and antiferromagnetic degrees of freedom, but the relationship between the two types of fluctuations has yet to be clarified. Here we study this problem in the presence of a…

Strongly Correlated Electrons · Physics 2020-11-24 Chia-Chuan Liu , Elihu Abrahams , Qimiao Si

Nematic systems are two component superconductors that break rotational symmetry, but exhibit a mixed symmetry that couples spatial rotations and phase difference rotations. We show that a consequence of this induced spatial anisotropy is…

Superconductivity · Physics 2023-06-14 Martin Speight , Thomas Winyard , Egor Babaev

Isoelectronic substitution is an ideal tuning parameter to alter electronic states and correlations in iron-based superconductors. As this substitution takes place outside the conducting Fe planes, the electronic behaviour is less affected…

Superconductivity · Physics 2021-05-25 Amalia I. Coldea

Nematicity, defined as broken rotational symmetry, has recently been observed in competing phases proximate to the superconducting phase in the cuprate high temperature superconductors. Similarly, the new iron-based high temperature…

We present an ab initio theoretical formalism for the static paramagnetic spin susceptibility of metals at finite temperatures. Since relativistic effects, e.g. spin-orbit coupling, are included, we can identify the anisotropy or easy axes…

Materials Science · Physics 2007-05-23 V. Thakor , J. B. Staunton , J. Poulter , S. Ostanin , B. Ginatempo , Ezio Bruno

Magnetism and superconductivity often compete for preeminence as a material's ground state, and in the right circumstances the fluctuating remains of magnetic order can induce superconducting pairing. The intertwining of the two on the…

Superconductivity · Physics 2019-04-02 Yishu Wang , Yejun Feng , J. -G. Cheng , W. Wu , J. L. Luo , T. F. Rosenbaum