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Related papers: Pressure induced superconductivity bordering a cha…

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Two-dimensional transition metal trichalcogenides (TMTC's) feature covalently bonded metal-chalcogen layers separated by the van der Waals (vdW) gap. Similar to transition metal dichalcogenides (TMDCs), TMTCs often host charge density waves…

Strongly Correlated Electrons · Physics 2022-03-01 Yu Liu , Zhixiang Hu , Xiao Tong , Denis Leshchev , Xiangde Zhu , Hechang Lei , Eli Stavitski , Klaus Attenkofer , C. Petrovic

Pressure not only provides a powerful way to tune the crystal structure of transition metal dichalcogenides (TMDCs) but also promotes the discovery of exotic electronic states and intriguing phenomena. Structural transitions from the…

Superconductivity · Physics 2026-01-13 Feng Xiao , Wen Lei , Wei Wang , Carmine Autieri , Xiaojun Zheng , Xing Ming , Jianlin Luo

We report on the pressure dependence of superconducting transition temperature Tc and upper critical field Bc2(0) through electrical transport of the Ti4Co2O superconductor (eg.,the superconducting transition temperature Tc = 2.5 K and the…

The coexistence of superconductivity and topology holds the potential to realize exotic quantum states of matter. Here we report that superconductivity induced by high pressure in three thallium-based materials, covering the phase…

The superconducting transition temperatures, $T_{\mathrm{c}}$, of La$_{4}$Ni$_{3}$O$_{10+\delta}$($\delta$ = 0.04 and -0.01) were determined under various pressures up to 124.9 GPa by electrical resistance measurements with a diamond anvil…

Through transport, compositional and structural studies, we review the features of the charge-density wave (CDW) conductor of NbS$_{3}$ (phase II). We highlight three central results: 1) In addition to the previously reported CDW…

The recently discovered kagome superconductors AV3Sb5 exhibit tantalizing high-pressure phase diagrams, in which a new dome-like superconducting phase emerges under moderate pressure. However, its origin is as yet unknown. Here, we carried…

A series of high-pressure resistivity measurements on single crystals of TbTe3 reveal a complex phase diagram involving the interplay of superconducting, antiferromagnetic and charge density wave orders. The onset of superconductivity…

Superconductivity · Physics 2015-05-13 J. J. Hamlin , D. A. Zocco , T. A. Sayles , M. B. Maple , J. -H. Chu , I. R. Fisher

IrTe$_2$ with large spin-orbital coupling (SOC) shows a CDW-like first order structural phase transition from high-temperature trigonal phase to low-temperature monoclinic phase at 270 K, accompanying with a large jump in transport and…

The 5d-transition metal pyrochlore oxide Cd2Re2O7, which was recently suggested to be a prototype of the spin-orbit-coupled metal [Phys. Rev. Lett. 115, 026401 (2015)], exhibits an inversion-symmetry breaking (ISB) transition at 200 K and a…

Strongly Correlated Electrons · Physics 2017-01-13 Jun-ichi Yamaura , Keiki Takeda , Yoichi Ikeda , Naohisa Hirao , Yasuo Ohishi , Tatsuo C. Kobayashi , Zenji. Hiroi

Superconductivity in the cuprates is found to be intertwined with charge and spin density waves. Determining the interactions between the different types of order is crucial for understanding these important materials. Here, we elucidate…

Unconventional superconductivity in bilayer graphene has been reported for twist angles $\theta$ near the first magic angle and charged electrostatically with holes near half filling of the lower flat bands. A maximum superconducting…

Superconductivity · Physics 2019-08-06 Dale R. Harshman , Anthony T. Fiory

The kagome material AV$_3$Sb$_5$ exhibits multiple exotic orders, including an unconventional charge density wave (CDW). Elucidating the underlying mechanism behind the CDW transition is crucial for unraveling the complex interactions among…

Here we report the effect of structural and superconductivity properties on Ru doped CuIr2Te4 telluride chalcogenide. XRD results suggest that the CuIr2-xRuxTe4 maintain the disordered trigonal structure with space group P3m1 (No. 164) for…

Superconductivity · Physics 2019-11-13 Dong Yan , Lingyong Zeng , Yishi Lin , Junjie Yin , Yuan He , Xing Zhang , Meiling Huang , Meng Wang , Yihua Wang , Daoin Yao , Huixia Luo

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

A series of layered CeO$_{1-x}$F$_x$FeAs compounds with x=0 to 0.20 are synthesized by solid state reaction method. Similar to the LaOFeAs, the pure CeOFeAs shows a strong resistivity anomaly near 145 K, which was ascribed to the…

Superconductivity · Physics 2008-06-20 G. F. Chen , Z. Li , D. Wu , G. Li , W. Z. Hu , J. Dong , P. Zheng , J. L. Luo , N. L. Wang

This article updates version 1 by restricting consideration to only the resistive data and excluding the questioned 287.7-K datum reported for carbonaceous sulfur hydride in Snider et al., Nature $\textbf{585}$, 373 (2020). The…

Superconductivity · Physics 2023-07-18 Dale R. Harshman , Anthony T. Fiory

We report the observation of local superconductivity induced at the point contact formed between a normal metal tip and WC -- a triple point topological semimetal with super hardness. Remarkably, the maximum critical temperature is up to…

The highest critical temperature of superconductivity Tc has been achieved in cuprates: 133 K at ambient pressure and 164 K at high pressures. As the nature of superconductivity in these materials is still not disclosed, the prospects for a…

Superconductivity · Physics 2014-12-02 A. P. Drozdov , M. I. Eremets , I. A. Troyan

Altermagnets (AMs), characterized by zero net magnetization and momentum-dependent spin splitting, are anticipated to hold significant potential for generating multiple exotic and uncommon superconducting states. However, superconductivity…

Superconductivity · Physics 2026-04-02 Y. Sun , Z. Yin , T. Zhang , L. Wang , B. Ruan , Y. Huang , J. He , W. Zhu , M. Ma , J. Bai , J. Cheng , Q. Dong , C. Li , P. Liu , Q. Liu , C. Zhang , G. Chen