The two band model for iron pnictide based superconductors is used in present work. Using Green’s function technique and equation of motion method, we have obtained expression for superconducting order parameter, Transition temperature, Density of state and Electronic Specific Heat. The theoretical results are then applied to LiFeAs superconductor and comparision with experimental results are made. It is found that the jump in specific heat at Tc is …, which is very close to the experimental value…. The two gap and Tc are obtained which have good agreement with the experimental results. Further it is also found that interband interaction has positive effect on Tc
We report a de Haas-van Alphen oscillation study of the 111 iron pnictide superconductors LiFeAs wit...
The pressure effects on the 111-type Fe-based superconductor LiFeAs were investigated through AC sus...
International audienceWe report a de Haas-van Alphen oscillation study of the 111 iron pnictide supe...
Two band model for Fe-As based oxygen containing superconductors is developed using the Green’s func...
In this thesis, specific heat, magnetic susceptibility and resistivity studies on the iron-pnictide ...
The thermally activated flux flow (TAFF) of a LiFeAs single crystal was studied in magnetic fields u...
At their discovery in 2008, iron pnictide superconductors (IPS) provoked tremendous scientific inter...
In this paper we propose a model to reproduce superconductive and normal properties of the iron pnic...
The in- and out-of-plane lower critical fields and magnetic penetration depths of LiFeAs were examin...
The in- and out-of-plane lower critical fields and magnetic penetration depths of LiFeAs were examin...
The electronic structure and lattice vibrational frequencies of the newly discovered superconductors...
Spectral properties of LiFeAs superconductor are investigated within the LDA+DMFT method. Calculated...
Between the different families of pnictide multiband superconductors, LiFeAs is probably one of the ...
Generalized multiple gap model for the Fe- As based oxygen containing superconductors is developed u...
Spectral properties of LiFeAs superconductor are investigated within the LDA+DMFT method. Calculated...
We report a de Haas-van Alphen oscillation study of the 111 iron pnictide superconductors LiFeAs wit...
The pressure effects on the 111-type Fe-based superconductor LiFeAs were investigated through AC sus...
International audienceWe report a de Haas-van Alphen oscillation study of the 111 iron pnictide supe...
Two band model for Fe-As based oxygen containing superconductors is developed using the Green’s func...
In this thesis, specific heat, magnetic susceptibility and resistivity studies on the iron-pnictide ...
The thermally activated flux flow (TAFF) of a LiFeAs single crystal was studied in magnetic fields u...
At their discovery in 2008, iron pnictide superconductors (IPS) provoked tremendous scientific inter...
In this paper we propose a model to reproduce superconductive and normal properties of the iron pnic...
The in- and out-of-plane lower critical fields and magnetic penetration depths of LiFeAs were examin...
The in- and out-of-plane lower critical fields and magnetic penetration depths of LiFeAs were examin...
The electronic structure and lattice vibrational frequencies of the newly discovered superconductors...
Spectral properties of LiFeAs superconductor are investigated within the LDA+DMFT method. Calculated...
Between the different families of pnictide multiband superconductors, LiFeAs is probably one of the ...
Generalized multiple gap model for the Fe- As based oxygen containing superconductors is developed u...
Spectral properties of LiFeAs superconductor are investigated within the LDA+DMFT method. Calculated...
We report a de Haas-van Alphen oscillation study of the 111 iron pnictide superconductors LiFeAs wit...
The pressure effects on the 111-type Fe-based superconductor LiFeAs were investigated through AC sus...
International audienceWe report a de Haas-van Alphen oscillation study of the 111 iron pnictide supe...