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Related papers: Type II superconductivity in SrPd2Ge2

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Quantized vortices in type-II superconductors provide insights into the mechanisms of superconductivity. However, the generation of antivortices, characterized by magnetization antiparallel to the external magnetic field, remains less…

Exploration of nontrivial superconductivity and electronic band topology is at the core of condensed matter physics and applications to quantum information. The transition-metal dichalcogenide (TMDC) MoTe$_2$ has been proposed as an ideal…

Superconductivity · Physics 2025-05-16 Sangyun Lee , Myungjun Kang , Duk Y. Kim , Jihyun Kim , Suyeon Cho , Sangmo Cheon , Tuson Park

p-wave superconductors allow for topological defects known as skyrmions, in addition to the usual vortices that are possible in both s-wave and p-wave materials. In strongly type-II superconductors in a magnetic field, a skyrmion flux…

Superconductivity · Physics 2013-05-29 Qi Li , John Toner , D. Belitz

We study the magnetic-field dependence of the vortex-core charge in the Abrikosov lattice of an $s$-wave superconductor based on the augmented quasiclassical equations, where we incorporate the pair-potential gradient (PPG) terms…

Superconductivity · Physics 2022-02-23 Marie Ohuchi , Hikaru Ueki , Takafumi Kita

Novel quasi two dimensional typically layered semimetals offer a unique opportunity to control the density and even the topology of the electronic matter. In intercalated MoTe2 type II Weyl semimetal the tilt of the dispersion relation…

Superconductivity · Physics 2023-01-23 Baruh Rosenstein , B. Ya. Shapiro

Recently PdTe was identified as a spin-orbit coupled topological Dirac semimetal and was claimed to exhibit both bulk-nodal and surface-nodeless superconducting gaps. Here we report the ultralow-temperature thermal conductivity measurements…

We study the vortex formation in extreme type-II superconductors immersed in strong magnetic fields in the framework of the the Ginzburg-Landau theory. We focus on the regime where superconductivity survives in the bulk of the material but…

Mathematical Physics · Physics 2025-08-18 M. Correggi , A. Kachmar

We report superconducting properties of AgSnSe2 which is a conventional type-II superconductor in the very dirty limit due to intrinsically strong electron scatterings. While this material is an isotropic three-dimensional (3D)…

Superconductivity · Physics 2013-03-04 Zhi Ren , M. Kriener , A. A. Taskin , Satoshi Sasaki , Kouji Segawa , Yoichi Ando

Numerical calculations on a mesoscopic ring of a type II superconductor in the London limit suggest that an Abrikosov vortex can be trapped in such a structure above a critical magnetic field and generate a phase shift in the…

Superconductivity · Physics 2015-10-07 Shaun A. Mills , Chenyi Shen , Zhuan Xu , Ying Liu

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

Two-dimensional (2D) superconductivity is a fascinating phenomenon packed with rich physics and wide technological application. The vortices and their dynamics arising from classical and quantum fluctuations give rise to…

Mesoscale and Nanoscale Physics · Physics 2018-12-17 Chithra H. Sharma , Ananthu P. Surendran , Sangeeth S. Varma , Madhu Thalakulam

Using large scale Monte Carlo simulations on a uniformly frustrated 3DXY model, we report a first order vortex lattice melting transition in clean, isotropic extreme type-II $\kappa \to \infty$ superconductors. This work clarifies an…

Superconductivity · Physics 2009-10-31 S-K. Chin , A. K. Nguyen , A. Sudboe

To study the superconducting gap structure of BiS$_2$-based layered compound NdO$_{0.71}$F$_{0.29}$BiS$_{2}$ ($T$$_{\rm c}$ = 5 K), we measured the thermal conductivity $\kappa$, which is a sensitive probe of the low-energy quasiparticle…

Superconductivity · Physics 2016-06-29 T. Yamashita , Y. Tokiwa , D. Terazawa , M. Nagao , S. Watauchi , I. Tanaka , T. Terashima , Y. Matsuda

The superconducting state is formed by the condensation of a large number of Cooper pairs. The normal state electronic properties can give significant influence on the superconducting state. For usual type-II superconductors, the vortices…

Superconductivity · Physics 2015-03-25 Zengyi Du , Delong Fang , Zhenyu Wang , Yufeng Li , Guan Du , Huan Yang , Xiyu Zhu , Hai-Hu Wen

Inspired by the recent experiments in monolayer iron-based superconductors, we theoretically investigate properties of a two-dimensional multiband superconductor, focusing on two aspects. First, for vortex bound states, the spatial…

Superconductivity · Physics 2024-08-06 Haijiao Ji , Noah F. Q. Yuan

Traditionally, superconductors are categorized as type-I or type-II. Type-I superconductors support only Meissner and normal states, while type-II superconductors form magnetic vortices in sufficiently strong applied magnetic fields.…

Superconductivity · Physics 2016-08-31 Egor Babaev , J. Martin Speight

Traditional superconductors fall into two categories, type-I, expelling magnetic fields, and type-II, into which magnetic fields exceeding a lower critical field $H_{\rm c1}$ penetrate in form of Abrikosov vortices. Abrikosov vortices are…

Superconductivity · Physics 2024-09-16 M. C. Diamantini , C. A. Trugenberger , V. M. Vinokur

The superconductor SnTaS$_{2}$ is theoretically predicted to be an intriguing topological nodal line semimetal without consideration of spin-orbit coupling. By carrying out angle-resolved photoemission (ARPES) and spin-resolved ARPES…

The optical properties of the new iron-based superconductor CsCa$_2$Fe$_4$As$_4$F$_2$ with $T_c \sim 29$~K have been determined. In the normal state a good description of the low-frequency response is obtained with a superposition of two…

Superconductivity · Physics 2019-03-18 B. Xu , Z. C. Wang , E. Sheveleva , F. Lyzwa , P. Marsik , G. H. Cao , C. Bernhard

The specific heat coefficient gamma_s(H) and the electronic thermal conductivity kappa_{es}(H) are calculated for Abrikosov's vortex lattice by taking into account the effects of supercurrent flow and Andreev scattering. First we solve the…

Superconductivity · Physics 2009-11-07 L. Tewordt , D. Fay
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