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相关论文: Nematic state of the FeSe superconductor

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We report pair distribution function measurements of the iron-based superconductor FeSe above and below the structural transition temperature. Structural analysis reveals a local orthorhombic distortion with a correlation length of about 4…

超导电性 · 物理学 2019-07-10 R. J. Koch , T. Konstantinova , M. Abeykoon , A. Wang , C. Petrovic , Y. Zhu , E. S. Bozin , S. J. L. Billinge

Neutron and x-ray total scattering measurements have been performed on powder samples of the iron chalcogenide superconductor FeSe. Using pair distribution function (PDF) analysis of the total scattering data to investigate short-range…

超导电性 · 物理学 2019-07-25 Benjamin A. Frandsen , Qisi Wang , Shan Wu , Jun Zhao , Robert J. Birgeneau

Superconducting iron chalcogenide FeSe has the simplest crystal structure among all the Fe-based superconductors. Unlike other iron pnictides, FeSe exhibits no long range magnetic order accompanying the tetragonal-to-orthorhombic structural…

We report high-pressure $^{77}$Se NMR studies on FeSe single crystals that reveal a prominent inhomogeneous NMR linewidth broadening upon cooling, with the magnetic field applied along the tetragonal [110] direction. The data indicate the…

超导电性 · 物理学 2017-09-29 P. S. Wang , P. Zhou , S. S. Sun , Y. Cui , T. R. Li , Hechang Lei , Ziqiang Wang , Weiqiang Yu

Tetragonal beta-FeSe obtained by hydrothermal reaction is not superconducting and transforms to a triclinic structure at 60 K unlike superconducting FeSe from solid state synthesis, which becomes orthorhombic at 90 K. In contrast,…

超导电性 · 物理学 2015-10-28 Ursula Pachmayr , Natalie Fehn , Dirk Johrendt

FeSe has a unique ground state in which superconductivity coexists with a nematic order without long-range magnetic ordering at ambient pressure. Here, to study how the pairing interaction evolves with nematicity, we measured the thermal…

超导电性 · 物理学 2018-05-22 Y. Sato , S. Kasahara , T. Taniguchi , X. Z. Xing , Y. Kasahara , Y. Tokiwa , T. Shibauchi , Y. Matsuda

We have performed a low temperature scanning tunneling microscopy and spectroscopy study of the iron chalcogenide superconductor FeSe_{0.4}Te_{0.6} with T_{C}~14 K. Spatially resolved measurements of the superconducting gap reveal…

超导电性 · 物理学 2013-10-23 U. R. Singh , S. C. White , S. Schmaus , V. Tsurkan , A. Loidl , J. Deisenhofer , P. Wahl

FeSe, despite being the structurally simplest compound in the family of iron-based superconductors, shows an astoundingly rich interplay of physical phenomena including nematicity and pressure-induced magnetism. Here, we present a…

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…

Understanding the interplay between nematicity, magnetism and superconductivity is pivotal for elucidating the physics of iron-based superconductors. Here we use neutron scattering to probe magnetic and nematic orders throughout the phase…

Single crystal synchrotron X-ray diffraction as a function of temperature and pressure has revealed a complex biphase mixture in superconducting FeSe. Based on our experimental results we construct a phase diagram where structural behavior…

超导电性 · 物理学 2017-08-02 V. Svitlyk , M. Raba , V. Dmitriev , P. Rodiere , P. Toulemonde , D. Chernyshov , M. Mezouar

The nature of the tetragonal-to-orthorhombic structural transition at $T_s\approx90$ K in single crystalline FeSe is studied using shear-modulus, heat-capacity, magnetization and NMR measurements. The transition is shown to be accompanied…

超导电性 · 物理学 2015-06-22 A. E. Böhmer , T. Arai , F. Hardy , T. Hattori , T. Iye , T. Wolf , H. v. Löhneysen , K. Ishida , C. Meingast

Formation of electronic nematicity is a common thread of unconventional superconductors. In iron-based materials, the long-range nematic order is revealed by the orthorhombic lattice distortion, which importance is a highly controversial…

As the simplest iron-based superconductor, FeSe forms a tetragonal structure with transition temperature Tc ~ 8 K. With assistance of pressure, or other techniques, Tc can be greatly enhanced, even to above liquid nitrogen temperature. The…

超导电性 · 物理学 2017-10-16 J. Zhang , F. L. Liu , T. P. Ying , N. N. Li , Y. Xu , L. P. He , X. C. Hong , Y. J. Yu , M. X. Wang , J. Shen , W. G. Yang , S. Y. Li

In a material prone to a nematic instability, anisotropic strain in principle provides a preferred symmetry-breaking direction for the electronic nematic state to follow. This is consistent with experimental observations, where electronic…

强关联电子 · 物理学 2021-02-09 Zheng Ren , Hong Li , He Zhao , Shrinkhala Sharma , Ziqiang Wang , Ilija Zeljkovic

The microscopic mechanism governing the zero-resistance flow of current in some iron-based, high-temperature superconducting materials is not well understood up to now. A central issue concerning the investigation of these materials is…

Elucidating the microscopic origin of nematic order in iron-based superconducting materials is important because the interactions that drive nematic order may also mediate the Cooper pairing. Nematic order breaks fourfold rotational…

Nematic phases, where electrons in a solid spontaneously break rotational symmetry while preserving the translational symmetry, exist in several families of unconventional superconductors [1, 2]. Although superconductivity mediated by…

The coupling between superconductivity and othorhombic distortion is studied in vapor-grown FeSe single crystals using high-resolution thermal-expansion measurements. In contrast to the Ba122-based (Ba122) superconductors, we find that…

超导电性 · 物理学 2015-06-15 A. E. Böhmer , F. Hardy , F. Eilers , D. Ernst , P. Adelmann , P. Schweiss , T. Wolf , C. Meingast

The study of the iron-based superconductor FeSe has blossomed with the availability of high quality single crystals, obtained through flux/vapor-transport growth techniques below the structural transformation temperature of its tetragonal…

超导电性 · 物理学 2016-08-02 A. E. Böhmer , V. Taufour , W. E. Straszheim , T. Wolf , P. C. Canfield
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