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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…

In iron pnictides, high temperature superconductivity emerges after suppressing antiferromagnetism by doping. Here we show that antiferromagnetism in Ca$_{1-x}$La$_x$FeAs$_2$ is robust against and even enhanced by doping. Using…

Single crystals of the Ni-doped FeAs-based superconductor SrFe2-xNixAs2 were grown using a self-flux solution method and characterized via x-ray measurements and low temperature transport, magnetization, and specific heat studies. A doping…

超导电性 · 物理学 2009-06-17 S. R. Saha , N. P. Butch , K. Kirshenbaum , Johnpierre Paglione

We report the realization of superconductivity by an isovalent doping with phosphorus in LaFeAsO. X-ray diffraction shows that, with the partial substitution of P for As, the Fe$_2$As$_2$ layers are squeezed while the La$_2$O$_2$ layers are…

超导电性 · 物理学 2009-08-12 Cao Wang , Shuai Jiang , Qian Tao , Zhi Ren , Yuke Li , Linjun Li , Chunmu Feng , Jianhui Dai , Guanghan Cao , Zhu'an Xu

We report the interplay between charge-density-wave (CDW) and superconductivity of 1$T$-Fe$_{x}$Ta$_{1-x}$S$_{2}$ ($0\leq x \leq 0.05$) single crystals. The CDW order is gradually suppressed by Fe-doping, accompanied by the disappearance of…

超导电性 · 物理学 2013-01-11 L. J. Li , W. J. Lu , X. D. Zhu , L. S. Ling , Z. Qu , Y. P. Sun

We investigate the importance of superconducting order parameter fluctuations in the 122 family of Fe-based superconductors, using high-resolution specific heat and thermal expansion data of various Ba$_{1-x}$K$_x$Fe$_2$As$_2$ single…

It is shown that the main features of the phase diagram for high Tc superconductivity can be calculated as a function of doping in a simple, essentially unique non-Landau/Fermi liquid with quartic interactions. The phase diagram depends on…

强关联电子 · 物理学 2008-05-30 Eliot Kapit , André LeClair

Applying an external pressure to indirectly electron-doped 122-type (Ba1-xLax)Fe2As2 epitaxial films enhances the superconducting critical temperature (Tc) up to 30.3 K. Different from the other family compounds, the Tc is enhanced not only…

超导电性 · 物理学 2013-10-16 Takayoshi Katase , Hikaru Sato , Hidenori Hiramatsu , Toshio Kamiya , Hideo Hosono

We report the detection of unusual superconductivity up to 49 K in single crystalline CaFe2As2 via electron-doping by partial replacement of Ca by rare-earth. The superconducting transition observed suggests the possible existence of two…

超导电性 · 物理学 2011-10-28 B. Lv , L. Z. Deng , M. Gooch , F. Y. Wei , Y. Y. Sun , J. Meen , Y. Y. Xue , B. Lorenz , C. W. Chu

By doping Rh to the Fe sites in SrFe2As2, superconductivity is induced when the antiferromagnetic (AF) order is suppressed. The maximum superconducting transition temperature was found at about 22 K with the doping level of x = 0.25. It is…

超导电性 · 物理学 2016-06-28 Fei Han , Xiyu Zhu , Peng Cheng , Bing Shen , Hai-Hu Wen

By extending previous work on the scaling of low frequency magnetic properties of the 2-1-4 cuprates to the 1-2-3 materials, we arrive at a consistent phenomenological description of protected behavior in the pseudogap state of the…

强关联电子 · 物理学 2009-11-11 Victor Barzykin , David Pines

Here we report the synthesis and basic characterization of LaFe1-xCoxAsO for several values of x. The parent phase LaFeAsO orders antiferromagnetically (TN ~ 145 K). Replacing Fe with Co is expected to both electron dope the system and…

We analyze the pairing instabilities for fermions on hexagonal lattices (both honeycomb and triangular ones) in a wide range of fermionic densities. We argue that for a generic doping in this range, superconductivity at weak coupling is of…

超导电性 · 物理学 2014-04-29 Rahul Nandkishore , Ronny Thomale , Andrey V. Chubukov

We use elastic and inelastic neutron scattering to systematically investigate the evolution of the low-energy spin excitations of the iron arsenide superconductor BaFe2-xNixAs2 as a function of nickel doping x. In the undoped state,…

Increasing doping concentration (x) in Pnictide superconductors results in the suppression of long range magnetic order and the emergence of superconductivity. While doping destroys long range magnetic order however the effect if any of the…

超导电性 · 物理学 2015-08-31 Biplab Bag , K. Vinod , A. Bharathi , S. S. Banerjee

We use scanning tunneling microscopy to investigate the doping dependence of quasiparticle interference (QPI) in NaFe1-xCoxAs iron-based superconductors. The goal is to study the relation between nematic fluctuations and Cooper pairing. In…

超导电性 · 物理学 2014-03-26 Peng Cai , Wei Ruan , Xiaodong Zhou , Cun Ye , Aifeng Wang , Xianhui Chen , Dung-Hai Lee , Yayu Wang

Single crystals of (Ca1-xLax)10(Pt3As8)(Fe2As2)5 (x = 0 to 0.182) superconductors have been grown and characterized by X-ray, microprobe, transport and thermodynamic measurements. Features in the magnetic susceptibility, specific heat and…

Utilizing an exactly solvable Hubbard-like model that exhibits a pseudogap (PG) phase and a partially flat band, we perform self-consistent microscopic calculations of the superconductivity (SC) in cuprates, incorporating both thermal and…

强关联电子 · 物理学 2025-05-12 Y. Shi , F. Yang , L. Q. Chen

We report on the recovery of the short-range static magnetic order and on the concomitant degradation of the superconducting state in optimally F-doped SmFe_(1-x)Ru_(x)AsO_0.85F_0.15 for 0.1< x<0.6. The two reduced order parameters coexist…

超导电性 · 物理学 2015-06-03 S. Sanna , P. Carretta , P. Bonfà , G. Prando , G. Allodi , R. De Renzi , T. Shiroka , G. Lamura , A. Martinelli , M. Putti

The interplay between different ordered phases, such as superconducting, charge or spin ordered phases, is of central interest in condensed matter physics. The very recent discovery of superconductivity with a remarkable T$_c$= 26 K in…

超导电性 · 物理学 2008-06-30 J. Dong , H. J. Zhang , G. Xu , Z. Li , G. Li , W. Z. Hu , D. Wu , G. F. Chen , X. Dai , J. L. Luo , Z. Fang , N. L. Wang