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相关论文: Superconductivity in Te-deficient ZrTe$_2$

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We studied the correlation among structure and transport properties and superconductivity in the different $A_x$Fe$_2$Se$_2$ single crystals ($A$ = K, Rb, and Cs). Two sets of (00$l$) reflections are observed in the X-ray single crystal…

We report on a comprehensive study of the transport, specific heat, magnetic susceptibility and optical spectroscopy on single crystal of Fe$_{1.05}$Te. We confirm that Fe$_{1.05}$Te undergoes a first-order phase transition near 65 K.…

超导电性 · 物理学 2015-05-13 G. F. Chen , Z. G. Chen , J. Dong , W. Z. Hu , G. Li , X. D. Zhang , P. Zheng , J. L. Luo , N. L. Wang

We report on syntheses and electron transport properties of polycrystalline samples of diborides (AB2) with different transition metals atoms (A=Zr,Nb,Ta). The temperature dependence of resistivity, \rho(T), and ac susceptibility of these…

材料科学 · 物理学 2009-11-07 Vitaly A. Gasparov , N. S. Sidorov , I. I. Zver'kova , M. P. Kulakov

The in-plane resistivity $\rho$ and thermal conductivity $\kappa$ of FeAs-based superconductor KFe$_2$As$_2$ single crystal were measured down to 50 mK. We observe non-Fermi-liquid behavior $\rho(T) \sim T^{1.5}$ at $H_{c_2}$ = 5 T, and the…

超导电性 · 物理学 2013-05-29 J. K. Dong , S. Y. Zhou , T. Y. Guan , H. Zhang , Y. F. Dai , X. Qiu , X. F. Wang , Y. He , X. H. Chen , S. Y. Li

Single crystals of the unconventional superconductor UTe$_2$ have been grown in various conditions which result in different superconducting transition temperature as well as normal state properties. Stoichiometry of the samples has been…

超导电性 · 物理学 2022-03-11 Y. Haga , P. Opletal , Y. Tokiwa , E. Yamamoto , Y. Tokunaga , S. Kambe , H. Sakai

From the measurement and analysis of the specific heat of high-quality K_(1-x)Na_xFe_2As_2 single crystals we establish the presence of large T^2 contributions with coefficients alpha_sc ~ 30 mJ/mol K^3 at low-T for both x=0 and 0.1.…

Type I superconductivity has recently been reported for the Dirac semimetal PdTe$_2$ (Tc approximately 1.6K) with, remarkably, multiple critical fields and a complex phase diagram. Here, measurements of the specific heat utilizing a thermal…

超导电性 · 物理学 2021-03-10 M. V. Salis , Y. K. Huang , A. de Visser

In the d-electron system YFe$_2$Ge$_2$, an unusually high and temperature dependent Sommerfeld ratio of the specific heat capacity $C/T \sim 100~\mathrm{mJ/(molK^2)}$ and an anomalous power law temperature dependence of the electrical…

强关联电子 · 物理学 2014-09-29 Y. Zou , Z. Feng , P. W. Logg , J. Chen , G. I. Lampronti , F. M. Grosche

We report the synthesis and characterization of RbNi$_2$Se$_2$, an analog of the iron chalcogenide superconductor Rb$_x$Fe$_2$Se$_2$, via transport, angle resolved photoemission spectroscopy, and density functional theory calculations. A…

Competition between collective states like charge density wave and superconductivity is played out in some of the transition metal dichalcogenides unencumbered by the spin degrees of freedom. Although 2H-NbSe$_2$ has received much less…

强关联电子 · 物理学 2015-04-21 S. Koley , N. Mohanta , A. Taraphder

ZrTe$_5$ is a newly discovered topological material. Shortly after a single layer ZrTe$_5$ had been predicted to be a two-dimensional topological insulator, a handful of experiments have been carried out on bulk ZrTe$_5$ crystals, which…

2$H$-TaSe$_2$ has been one of unique transition metal dichalcogenides exhibiting several phase transitions due to a delicate balance among competing electronic ground states. An unusual metallic state at high-$T$ is sequentially followed by…

超导电性 · 物理学 2016-03-21 D. Bhoi , S. Khim , W. Nam , B. S. Lee , Chanhee Kim , B. -G. Jeon , B. H. Min , S. Park , Kee Hoon Kim

The FeSe superconductor and its related systems have attracted much attention in the iron-based superconductors owing to their simple crystal structure and peculiar electronic and physical properties. The bulk FeSe superconductor has a…

超导电性 · 物理学 2015-06-24 Xu Liu , Lin Zhao , Shaolong He , Junfeng He , Defa Liu , Daixiang Mou , Bing Shen , Yong Hu , Jianwei Huang , X. J. Zhou

This work reports on the novel Heusler superconductor ZrNi2Ga. Compared to other nickel-based superconductors with Heusler structure, ZrNi2Ga exhibits a relatively high superconducting transition temperature of Tc=2.9 K and an upper…

In unconventional superconductors, it is generally believed that understanding the physical properties of the normal state is a pre-requisite for understanding the superconductivity mechanism. In conventional superconductors like niobium or…

We report the synthesis, electronic properties, and electronic states of Zr6MTe2 (M = Cr, Mn, Fe, and Co), which is isostructural to a recently discovered superconductor family Sc6MTe2. Based on the electrical resistivity and heat capacity…

Single crystals of Rb{0.8}Fe2Se2 are successfully synthesized with the superconducting transition temperatures T_c{onset}= 31 K and T_c{zero}= 28 K. A clear anomaly of resistivity was observed in the normal state at about 150 K, as found in…

超导电性 · 物理学 2011-05-30 Chun-Hong Li , Bing Shen , Fei Han , Xiyu Zhu , Hai-Hu Wen

Single crystals of Tl0.58Rb0.42Fe1.72Se2 are successfully grown with the superconducting transition temperatures Tconset=32K and Tczero=31.4K. The Hall coefficient exhibits a multi-band behavior, which is very similar to that of all other…

超导电性 · 物理学 2011-02-21 Hangdong Wang , Chihen Dong , Zujuan Li , Shasha Zhu , Qianhui Mao , Chunmu Feng , H. Q. Yuan , Minghu Fang

We study new superconductor candidates in functionalized MXenes Zr$_2$NS$_2$, Zr$_2$NCl$_2$, and Sc$_2$NCl$_2$ with $\textit{ab initio}$ calculations based on density functional theory for superconductors (SCDFT). The superconducting…

超导电性 · 物理学 2025-09-29 Alpin N. Tatan , Osamu Sugino

We have investigated the specific heat of optimally-doped iron chalcogenide superconductor Fe(Te0.57Se0.43) with a high-quality single crystal sample. The electronic specific heat Ce of this sample has been successfully separated from the…

超导电性 · 物理学 2011-04-29 J. Hu , T. J. Liu , B. Qian , A. Rotaru , L. Spinu , Z. Q. Mao