scholarly journals Electronic Origin of Tc in Bulk and Monolayer FeSe

Symmetry ◽  
2021 ◽  
Vol 13 (2) ◽  
pp. 169
Author(s):  
Swagata Acharya ◽  
Dimitar Pashov ◽  
Francois Jamet ◽  
Mark van Schilfgaarde

FeSe is classed as a Hund’s metal, with a multiplicity of d bands near the Fermi level. Correlations in Hund’s metals mostly originate from the exchange parameter J, which can drive a strong orbital selectivity in the correlations. The Fe-chalcogens are the most strongly correlated of the Fe-based superconductors, with dxy the most correlated orbital. Yet little is understood whether and how such correlations directly affect the superconducting instability in Hund’s systems. By applying a recently developed ab initio theory, we show explicitly the connections between correlations in dxy and the superconducting critical temperature Tc. Starting from the ab initio results as a reference, we consider various kinds of excursions in parameter space around the reference to determine what controls Tc. We show small excursions in J can cause colossal changes in Tc. Additionally we consider changes in hopping by varying the Fe-Se bond length in bulk, in the free standing monolayer M-FeSe, and M-FeSe on a SrTiO3 substrate (M-FeSe/STO). The twin conditions of proximity of the dxy state to the Fermi energy, and the strength of J emerge as the primary criteria for incoherent spectral response and enhanced single- and two-particle scattering that in turn controls Tc. Using c-RPA, we show further that FeSe in monolayer form (M-FeSe) provides a natural mechanism to enhance J. We explain why M-FeSe/STO has a high Tc, whereas M-FeSe in isolation should not. Our study opens a paradigm for a unified understanding what controls Tc in bulk, layers, and interfaces of Hund’s metals by hole pocket and electron screening cloud engineering.

2018 ◽  
Vol 31 (3) ◽  
pp. 26 ◽  
Author(s):  
Laheeb. A. Mohammed ◽  
Kareem. A. Jasim

   on this research is to study the effect of nickel oxide substitution on the pure phases superconductor Tl0.5Pb0.5Ba2Can-1Cun-xNixO2n+3-δ (n=3) where x=(0,0.2,0.4,0.6,0.8.and 1.0). The specimens in this work were prepared with used  procedure of solid state reaction with sintering temperature 8500C for 24 h .we used technical (4-prob)to calculated and the critical temperature Tc . The results of the XRD diffraction analysis showed that the structure for pure and doped phases was tetragonal with phases high-Tc phase (1223),(1212) and low-Tc phase (1202)  and add to the presence of some impure phase. It was noted the value a=b,c  the parameter of  the lattice increment  with the increment of Ni content. The increment of (NiO) concentration effects electrical resistivity, dielectric constant and the hardness.


1980 ◽  
Vol 17 (1) ◽  
pp. 164-168 ◽  
Author(s):  
John J. Barton ◽  
Coenraad A. Swarts ◽  
William A. Goddard ◽  
T. C. McGill
Keyword(s):  

Author(s):  
Ievgen Ie. Gorbenko ◽  
Elena P. Troitskaya ◽  
Ekaterina A. Pilipenko ◽  
Ilya A. Verbenko ◽  
Yuriy I. Yurasov

2018 ◽  
Vol 113 (23) ◽  
pp. 232403 ◽  
Author(s):  
Bernd Zimmermann ◽  
William Legrand ◽  
Davide Maccariello ◽  
Nicolas Reyren ◽  
Vincent Cros ◽  
...  

Author(s):  
Josef Kudrnovský ◽  
Václav Drchal ◽  
Claudia Blaas ◽  
Peter Weinberger ◽  
Ilja Turek ◽  
...  

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