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Low temperature superconductivity was known since 1957 to be described by BCS theory for an effective single band metals controlled by the density of states at the Fermi level, very far from band edges, the electron phonon coupling, and the…

The quasi-skutterudite superconductor La$_3$Co$_4$Sn$_{13}$ undergoes a phase transition at $T^*=152$ K. By measuring the temperature dependence of heat capacity, electrical resistivity, and the superlattice reflection intensity using…

Theoretical limits to the performance of superconductors in high magnetic fields parallel to their surfaces are of key relevance to current and future accelerating cavities, especially those made of new higher-Tc materials such as Nb$_3$Sn,…

High $T_c$ cuprate superconductors are characterized by two robust features: their strong electronic correlations and their intrinsic dynamical local lattice instabilities. Focusing on exclusively that latter, we picture their parent state…

Superconductivity · Physics 2023-07-19 Julius Ranninger

It was recently shown that the vacuum in the background of a strong enough magnetic field may become an electromagnetic superconductor due to interplay between strong and electromagnetic forces. The superconducting ground state of the…

High Energy Physics - Phenomenology · Physics 2012-12-04 M. N. Chernodub , Jos Van Doorsselaere , Henri Verschelde

While for many years the lattice, electronic and magnetic complexity of high-temperature superconductors (HTS) has been considered responsible for hindering the search of the mechanism of HTS now the complexity of HTS is proposed to be…

Superconductivity · Physics 2012-06-13 Antonio Bianconi , Nicola Poccia

The description of superconductivity at high temperature is a problem that has recently been addressed. Transition temperature of superconductivity, $T_c$, depends on the lattice structure type, size, and room pressure. In super-lattices…

Superconductivity · Physics 2023-09-01 M. M. Bagheri-Mohagheghi , B. Pourhassan , M. Adelifard , M. Shokooh-Saremi , S. Upadhyay

Atomic-scale disorder is conventionally regarded as detrimental to superconductivity; however, under specific conditions, it can enhance superconducting properties. Here, we investigate the role of substitutional disorder in Remeika-type…

Superconductivity · Physics 2026-02-27 Andrzej Ślebarski , Maciej M. Maśka

Understanding the emergence of unconventional superconductivity, where the order parameter deviates from simple isotropic s-wave pairing, is a central puzzle in condensed matter physics. Transition-metal dichalcogenides (TMDCs), though…

I review the principal theories that have been proposed for the superconducting phases of UPt$_3$. The detailed H-T phase diagram places constraints on any theory for the multiple superconducting phases. I comment on the limitations of the…

Superconductivity · Physics 2018-12-27 J. A. Sauls

Thermal fluctuations and disorder play an essential role in high-T$_c$ superconductors. After reviewing the mean-field phase diagram we describe significant modifications that result when the effects of finite temperature and disorder are…

Condensed Matter · Physics 2012-08-17 David A. Huse , Leo R. Radzihovsky

In this paper we shall introduce a lattice model of unconventional superconductors (SC) like d-wave SC in order to study quantum phase transition at vanishing temperature ($T$). Finite-$T$ counterpart of the present model was proposed…

Strongly Correlated Electrons · Physics 2009-11-13 Kenji Sawamura , Yuki Moribe , Ikuo Ichinose

High-temperature superconductivity emerges in a host of different quantum materials, often in a region of the phase diagram where the electronic kinetic energy is comparable in magnitude with the electron-electron Coulomb repulsion.…

Strongly Correlated Electrons · Physics 2020-12-14 Morten H. Christensen , Xiaoyu Wang , Yoni Schattner , Erez Berg , Rafael M. Fernandes

We study the interplay between disorder and superconductivity in a rope of metallic carbon nanotubes. Based on the time dependent Ginzburg Landau theory, we derive the superconducting transition temperature T$_c$ taking into account the…

Superconductivity · Physics 2015-05-14 Besma Bellafi , Sonia Haddad , Samia Charfi-Kaddour

Strange metals exhibit universal linear-in-temperature resistivity described by a Planckian scattering rate, the origin of which remains elusive. By employing a novel approach inspired by quantum optics, we arrive at the coherent state…

Strongly Correlated Electrons · Physics 2024-07-09 Alhun Aydin , Joonas Keski-Rahkonen , Eric J. Heller

According to the Bardeen-Cooper-Schrieffer (BCS) theory, superconductivity usually needs well defined Fermi surface(s) with strong electron-phonon coupling and moderate quasiparticle density of states (DOS). A kagome lattice can host flat…

Superconductivity · Physics 2023-02-22 Qing Li , Yuxiang Wu , Xinwei Fan , Ying-Jie Zhang , Xiyu Zhu , Zhengyan Zhu , Yiwen Li , Hai-Hu Wen

The superconducting behavior of the topological semimetal CaSn$_{3}$ was investigated by means of magnetotransport and muon spectroscopy $\mu$SR measurements, both providing strong evidence of nematic behavior. Magnetotransport detects an…

Recently, the existence of superconductivity in $\mathrm{H_{3}S}$ and other high-pressure hydrides is called into question, because of some flawed magnetic measurements. In Ref.[1] the SCPC model is proposed, where strong pinning of…

Superconductivity · Physics 2023-02-13 Miodrag L. Kulić

The phase diagram of LaFeAs$_{1-x}$P$_x$O system has been extensively studied through hole- and electron-doping as well as As/P-substitution. It has been revealed that there are three different superconducting phases with different Fermi…

Superconductivity · Physics 2017-07-03 S. Miyasaka , M. Uekubo , H. Tsuji , M. Nakajima , T. Shiota , H. Mukuda , S. Tajima , H. Sagayama , H. Nakao , R. Kumai , Y. Murakami

We calculate the electronic polarizability in the superconducting state near extremum vectors ${\vec Q}_0$ of the Fermi surface. A pole appears in the polarizability at frequencies $\omega$ near the superconducting gap $2\Delta$ which leads…

Superconductivity · Physics 2013-07-19 Hae-Young Kee , C. M. Varma