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We report superconductivity in polycrystalline samples of the 1038-type compounds (Ca$_{1-x}$RE$_x$)$_{10}$(FeAs)$_{10}$(Pt$_3$As$_8$) up to T$_c$ = 35 K with RE = Y, La-Nd, Sm, Gd-Lu. The critical temperatures are independent of the…

Superconductivity · Physics 2014-10-29 Tobias Stürzer , Gerald Derondeau , Dirk Johrendt

The effects of phosphorus doping on the structural and superconducting phase transitions of BaNi$_2$(As$_{1-x}$P$_x$)$_2$ were studied. The specific heat, resistivity, and magnetic susceptibility were measured. The results revealed an…

Superconductivity · Physics 2012-10-30 K. Kudo , M. Takasuga , Y. Okamoto , Z. Hiroi , M. Nohara

La2O2Bi2Pb2S6 is a layered Bi-based oxychalcogenide with a thick four-layer-type conducting layer. Although La2O2Bi2Pb2S6 is a structural analogue of La2O2Bi3AgS6, which is a superconductor, insulating behavior has been observed in…

Superconductivity · Physics 2020-06-24 Rajveer Jha , Yosuke Goto , Tatsuma D. Matsuda , Yuji Aoki , Yoshikazu Mizuguchi

We report superconductivity, physical and structural properties of Ir1-xRhxTe2 (0<=x<=0.3). Superconducting transition with maximum Tc~2.6 K appears when the doping content of Rh x is in between 0.15 and 0.3. Further increasing the content…

Superconductivity · Physics 2013-07-29 Hechang Lei , Kefeng Wang , Milinda Abeykoon , Emil Bozin , J. B. Warren , C. Petrovic

The temperature dependence of the paramagnetic susceptibility of the iron pnictide superconductor KFe2As2 and its connection with the spectral properties of that material is investigated by a combination of density functional theory (DFT)…

Strongly Correlated Electrons · Physics 2014-07-28 S. L. Skornyakov , V. I. Anisimov , D. Vollhardt

Achieving electrostatic control of quantum phases is at the frontier of condensed matter research. Recent investigations have revealed superconductivity tunable by electrostatic doping in twisted graphene heterostructures and in…

We report on the synthesis and the physical properties of Ba1-xRbxTi2Sb2O (x < 0.4) by x-ray diffraction, SQUID magnetometery, resistivity and specific heat measurements. Upon hole doping by substituting Ba with Rb, we find…

Superconductivity · Physics 2014-03-10 Fabian von Rohr , Reinhard Nesper , Andreas Schilling

A brief overview of changes in the superconducting transition temperature under pressure and evolution of specific heat capacity jump at Tc for two related families of iron - based superconductors, Ba{1-x}KxFe2As2 (0.2 < x < 1.0) and…

Superconductivity · Physics 2015-02-23 Sergey L. Bud'ko

2H-NbSe2 is one of the most widely researched transition metal dichalcogenide (TMD) superconductors, which undergoes charge-density wave (CDW) transition at TCDW about 33 K and superconducting transition at Tc of 7.3 K. To explore the…

Superconductivity · Physics 2019-07-04 Dong Yan , Yishi Lin , Guohua Wang , Zhen Zhu , Shu Wang , Lei Shi , Yuan He , Man-Rong Li , Hao Zheng , Jie Ma , Jinfeng Jia , Yihua Wang , Huixia Luo

Superconductivity up to 30 K in charge neutrally doped BaFe2[As(1-x)P(x)]2 has been ascribed to chemical pressure, caused by the shrinking unit cell. But the latter induces no superconductivity in [Ba(1-x)Sr(x)]Fe2As2 in spite of the same…

Superconductivity · Physics 2010-07-14 Marianne Rotter , Christine Hieke , Dirk Johrendt

The effects of pressure on antiferromagnetic (AFM) and superconducting phase transitions of 112-type Ca$_{1-x}$La$_{x}$FeAs$_{2}$ were studied, and the in-plane electrical resistivity $\rho_{ab}$ was measured with an indenter-type pressure…

High-temperature superconductivity in iron pnictides occurs when electrons are doped into their antiferromagnetic (AF) parent compounds. In addition to inducing superconductivity, electron-doping also changes the static commensurate AF…

We report measurements of Hc2(T) up to 85 Tesla on Ba1-xKxAs2Fe2 single crystals and FeSe1-xTex films tuned by doping and strain. We observed an Hc2 enhancement by nearly 25 T at 30 K for the optimally-doped Ba1-xKxAs2Fe2 as compared to the…

In FeSe-derived superconductors, the lack of a systematic and clean control on the carrier concentration prevents the comprehensive understanding on the phase diagram and the interplay between different phases. Here by K dosing and angle…

We investigate the thermodynamic and transport properties of silver-substituted BaFe2As2 (122) crystals, up to ~4.5%. Similar to other transition-metal substitutions in 122, Ag diminishes the antiferromagnetic (TN) and structural (TS)…

Superconductivity · Physics 2016-10-19 Li Li , Huibo Cao , David S. Parker , Stephen J. Kuhn , Athena S. Sefat

We have successfully synthesized a new superconducting phase of FeTe1-xSx with a PbO-type structure. It has the simplest crystal structure in iron-based superconductors. Superconducting transition temperature is about 10 K at x = 0.2. The…

Superconductivity · Physics 2009-01-07 Y. Mizuguchi , F. Tomioka , S. Tsuda , T. Yamaguchi , Y. Takano

We report the effect of applied pressures on magnetic and superconducting order in single crystals of the aliovalent La-doped iron pnictide material Ca$_{1-x}$La$_{x}$Fe$_{2}$As$_{2}$. Using electrical transport, elastic neutron scattering…

The recent discovery of superconductivity with relatively high transition temperature Tc in the layered iron-based quaternary oxypnictides La[ O1-xFx] FeAs was a real surprise. The excitement generated can be seen by the number of…

Superconductivity was achieved in Ti-doped iron-arsenide compound Sr4Cr0.8Ti1.2O6Fe2As2 (abbreviated as Cr-FeAs-42622). The x-ray diffraction measurement shows that this material has a layered structure with the space group of…

Superconductivity · Physics 2015-05-13 Xiyu Zhu , Fei Han , Gang Mu , Peng Cheng , Bing Shen , Bin Zeng , Hai-Hu Wen

The superconductivity in high temperature superconductors ordinarily arises when doped with hetero-valent ions that introduce charge carriers. However, in ferropnictides, "iso-valent" doping, which is generally believed not to introduce…

Superconductivity · Physics 2015-03-19 Z. R. Ye , Y. Zhang , M. Xu , Q. Q. Ge , F. Chen , Juan Jiang , B. P. Xie , J. P. Hu , D. L. Feng