The recently discovered nickelate superconductors appear, at first glance, to be even more complicated multi-orbital systems than cuprates. To identify the simplest model describing the nickelates, we analyse the multi-orbital system and find that it is instead the nickelates which can be described by a one-band Hubbard model, albeit with an additional electron reservoir and only around the superconducting regime. Our calculations of the critical temperature TC are in good agreement with experiment, and show that optimal doping is slightly below 20% Sr-doping. Even more promising than 3d nickelates are 4d palladates
We investigate charge distribution in the recently discovered high-Tc superconductors, layered nicke...
Superconductivity is one of the most intriguing properties of matter described by an attractive inte...
Nickelate superconductors are outstanding materials with intriguing analogies with the cuprates. The...
The recently discovered nickelate superconductors appear, at first glance, to be even more complicat...
Effective models are constructed for a newly discovered superconductor (Nd,Sr)NiO2, which has been c...
In a previous study, we proposed a possibility of high $T_c$ superconductivity in mixed-anion nickel...
Starting from an effective two-dimensional two-band model for infinite-layered nickelates, consistin...
The predominant Ni-multiorbital nature of infinite-layer neodynium nickelate at stoichiometry and wi...
The discovery of superconductivity in infinite-layer nickelates, with transition temperature ($T_c$)...
Motivated by the recent experimental discovery of superconductivity in the infinite-layer nickelate ...
Motivated by the recent theoretical materials design of superconducting $d^9$ nickelates for which t...
We theoretically investigate the unconventional superconductivity in the newly discovered infinite-l...
Since the discovery of superconductivity in infinite-layer nickelates RNiO$_2$ (R=La, Pr, Nd), great...
Motivated by the recent observation of superconductivity in strontium-doped NdNiO2, we study the sup...
We use a combination of Density Functional Theory and Dynamical Mean Field Theory (DFT+DMFT) to stud...
We investigate charge distribution in the recently discovered high-Tc superconductors, layered nicke...
Superconductivity is one of the most intriguing properties of matter described by an attractive inte...
Nickelate superconductors are outstanding materials with intriguing analogies with the cuprates. The...
The recently discovered nickelate superconductors appear, at first glance, to be even more complicat...
Effective models are constructed for a newly discovered superconductor (Nd,Sr)NiO2, which has been c...
In a previous study, we proposed a possibility of high $T_c$ superconductivity in mixed-anion nickel...
Starting from an effective two-dimensional two-band model for infinite-layered nickelates, consistin...
The predominant Ni-multiorbital nature of infinite-layer neodynium nickelate at stoichiometry and wi...
The discovery of superconductivity in infinite-layer nickelates, with transition temperature ($T_c$)...
Motivated by the recent experimental discovery of superconductivity in the infinite-layer nickelate ...
Motivated by the recent theoretical materials design of superconducting $d^9$ nickelates for which t...
We theoretically investigate the unconventional superconductivity in the newly discovered infinite-l...
Since the discovery of superconductivity in infinite-layer nickelates RNiO$_2$ (R=La, Pr, Nd), great...
Motivated by the recent observation of superconductivity in strontium-doped NdNiO2, we study the sup...
We use a combination of Density Functional Theory and Dynamical Mean Field Theory (DFT+DMFT) to stud...
We investigate charge distribution in the recently discovered high-Tc superconductors, layered nicke...
Superconductivity is one of the most intriguing properties of matter described by an attractive inte...
Nickelate superconductors are outstanding materials with intriguing analogies with the cuprates. The...