The proposed model can qualitatively describe the occurrence of high-temperature superconductivity in FeSe/SrTiO3. The Hamiltonian of a two-layer system is reduced to a twoband Hamiltonian, taking into account all possible pairing of electrons inside one energy band and electrons in the different energy bands. The superconductivity mechanism can be both phononic and electronic. The main factor is the presence of a large number of constants of the electron–electron interactions that contribute to the formation of Cooper pairs and also the possibility of increasing the ratio of densities of electronic energy bands N2/N1 by doping the systems or in some other way. A method for experimental verification of the dominance of interband interaction...
Since the dramatic enhancement of the superconducting transition temperature (T-c) was reported in a...
A generalized pairing theory of superconductivity in layered crystals is formulated in terms of an a...
There are a group of FeSe systems: FeSe/SrTiO3 monolayer system (Tc~60-100K) and other heavily elect...
Epitaxial engineering of solid-state heterointerfaces is a leading avenue to realizing enhanced or n...
We study the effect of combining spin fluctuations and forward scattering electron-phonon (e-ph) cou...
Monolayer FeSe films grown on SrTiO3 (STO) substrate show superconducting gap-opening temperatures (...
Monolayer FeSe films grown on SrTiO3 (STO) substrate show superconducting gap-opening temperatures (...
The problem of superconductivity in metal at low temperatures has been of great theoretical interest...
Emergent electronic phenomena in iron-based superconductors have been at the forefront of condensed ...
Monolayer FeSe films grown on SrTiO3 (STO) substrate show superconducting gap-opening temperatures (...
Pairing in one-atomic-layer-thick two-dimensional electron gas (2DEG) by a single flat band of high-...
Superconductivity is broadly believed to stem from either electron-phonon interaction (EPI) or from ...
Superconductivity in one-atom-layer iron selenide (FeSe) on a strontium titanate (STO) substrate is ...
Superconductivity describes the spectacular ability of electrons in some materials at low temperatur...
We present a novel method for embedding spin and charge fluctuations in an anisotropic, multiband, a...
Since the dramatic enhancement of the superconducting transition temperature (T-c) was reported in a...
A generalized pairing theory of superconductivity in layered crystals is formulated in terms of an a...
There are a group of FeSe systems: FeSe/SrTiO3 monolayer system (Tc~60-100K) and other heavily elect...
Epitaxial engineering of solid-state heterointerfaces is a leading avenue to realizing enhanced or n...
We study the effect of combining spin fluctuations and forward scattering electron-phonon (e-ph) cou...
Monolayer FeSe films grown on SrTiO3 (STO) substrate show superconducting gap-opening temperatures (...
Monolayer FeSe films grown on SrTiO3 (STO) substrate show superconducting gap-opening temperatures (...
The problem of superconductivity in metal at low temperatures has been of great theoretical interest...
Emergent electronic phenomena in iron-based superconductors have been at the forefront of condensed ...
Monolayer FeSe films grown on SrTiO3 (STO) substrate show superconducting gap-opening temperatures (...
Pairing in one-atomic-layer-thick two-dimensional electron gas (2DEG) by a single flat band of high-...
Superconductivity is broadly believed to stem from either electron-phonon interaction (EPI) or from ...
Superconductivity in one-atom-layer iron selenide (FeSe) on a strontium titanate (STO) substrate is ...
Superconductivity describes the spectacular ability of electrons in some materials at low temperatur...
We present a novel method for embedding spin and charge fluctuations in an anisotropic, multiband, a...
Since the dramatic enhancement of the superconducting transition temperature (T-c) was reported in a...
A generalized pairing theory of superconductivity in layered crystals is formulated in terms of an a...
There are a group of FeSe systems: FeSe/SrTiO3 monolayer system (Tc~60-100K) and other heavily elect...