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Type-1.5 Superconducting State from an Intrinsic Proximity Effect in Two-Band Superconductors,
Superconducting vortex multiband superconductors leading to a qualitative change attractive and reaction of low magnetic field eddy
2014/12/18
We show that in multiband superconductors, even an extremely small interband proximity effect can lead to a qualitative change in the interaction potential between superconducting vortices by producin...
Origin of the pseudogap and its influence on superconducting state
Origin of the pseudogap superconducting state
2010/11/23
When holes move in the background of strong antiferromagnetic correlation, two spatial scales
emerge which lead to a much reduced hopping integral with an additional phase factor. By taking
these tw...
Superconducting State Parameters of Al-Li Binary Alloys
Pseudopotential Superconducting state parameters Binary alloys
2010/4/8
Theoretical computation of superconducting state parameters (SSP) viz. electron-phonon coupling strength l , Coulomb pseudopotential m* , transition temperature TC , isotope effect exponent a and effe...
Study of superconducting state parameters of ternary metallic glasses through pseudopotential approach
pseudopotential superconducting state parameters ternary metallic glasses
2010/10/13
A theoretical investigation on the screening dependence of the superconducting state parameters (SSPs) viz. the electron-phonon coupling strength , the Coulomb pseudopotential
μ, the transition tem...
Superconducting State Parameters of Be-Zr Glassy Alloys
Pseudopotential superconducting state parameters Be-Zr metallic glasses
2010/4/9
The theoretical investigation of the superconducting state parameters (SSP) viz. electron-phonon coupling strength l , Coulomb pseudopotential m*, transition temperature TC , isotope effect exponent a...
Theoretical Investigation of Superconducting State Parameters of Binary Metallic Glasses Cu1-cSnc
Pseudopotential superconducting state parameters binary metallic glasses
2010/4/9
Superconducting state parameters (SSP) viz. electron-phonon coupling strength l, Coulomb pseudopotential m*, transition temperature TC, isotope effect exponent a and effective interaction strength NO ...