AbstractIn this Letter, based on the Sturm–Liouville eigenvalue approach, we analytically investigate the properties of holographic superconductors in the background of pure Einstein and Gauss–Bonnet gravity taking into account the backreaction of the spacetime. Higher value of the backreaction parameter results in a harder condensation to form in both cases. The analytical results obtained are found to be in good agreement with the existing numerical results
In this paper, we construct a novel holographic superconductor from higher derivative (HD) gravity i...
In this paper, based on the Sturm-Liouville eigenvalue problem, we analytically investigate several ...
AbstractBased on the Sturm–Liouville eigenvalue problem, Banerjee et al. proposed a perturbative app...
In this paper, based on the Sturm-Liouville eigenvalue approach, we analytically investigate the pro...
AbstractIn this Letter, based on the Sturm–Liouville eigenvalue approach, we analytically investigat...
We analytically and numerically investigate the properties of s-wave holographic superconductors by ...
In this thesis we study two different aspects of holographic superconductivity. First we study fully...
In this paper we have analytically investigated holographic superconductors in four dimensional Eins...
We investigate the properties of the backreacting holographic superconductors from the coupling of a...
We extend the analytical studies on the properties of s-wave holographic superconductors in the pres...
AbstractWe extend the analytical studies on the properties of s-wave holographic superconductors in ...
In this paper, we analytically study the holographic superconductor models with the high derivative ...
Abstract We analytically as well as numerically study the effects of Born–Infeld nonlinear electrody...
We study holographic superconductors in Einstein-Gauss-Bonnet gravity. We consider two particular ba...
Abstract We analytically and numerically disclose the effects of the higher-order correction terms i...
In this paper, we construct a novel holographic superconductor from higher derivative (HD) gravity i...
In this paper, based on the Sturm-Liouville eigenvalue problem, we analytically investigate several ...
AbstractBased on the Sturm–Liouville eigenvalue problem, Banerjee et al. proposed a perturbative app...
In this paper, based on the Sturm-Liouville eigenvalue approach, we analytically investigate the pro...
AbstractIn this Letter, based on the Sturm–Liouville eigenvalue approach, we analytically investigat...
We analytically and numerically investigate the properties of s-wave holographic superconductors by ...
In this thesis we study two different aspects of holographic superconductivity. First we study fully...
In this paper we have analytically investigated holographic superconductors in four dimensional Eins...
We investigate the properties of the backreacting holographic superconductors from the coupling of a...
We extend the analytical studies on the properties of s-wave holographic superconductors in the pres...
AbstractWe extend the analytical studies on the properties of s-wave holographic superconductors in ...
In this paper, we analytically study the holographic superconductor models with the high derivative ...
Abstract We analytically as well as numerically study the effects of Born–Infeld nonlinear electrody...
We study holographic superconductors in Einstein-Gauss-Bonnet gravity. We consider two particular ba...
Abstract We analytically and numerically disclose the effects of the higher-order correction terms i...
In this paper, we construct a novel holographic superconductor from higher derivative (HD) gravity i...
In this paper, based on the Sturm-Liouville eigenvalue problem, we analytically investigate several ...
AbstractBased on the Sturm–Liouville eigenvalue problem, Banerjee et al. proposed a perturbative app...