Abstract In this paper, we investigate the effects of nonlinear exponential electrodynamics as well as backreaction on the properties of one-dimensional s-wave holographic superconductors. We continue our study both analytically and numerically. In analytical study, we employ the Sturm–Liouville method while in numerical approach we perform the shooting method. We obtain a relation between the critical temperature and chemical potential analytically. Our results show a good agreement between analytical and numerical methods. We observe that the increase in the strength of both nonlinearity and backreaction parameters causes the formation of condensation in the black hole background harder and critical temperature lower. These results are co...
We investigate the properties of the backreacting holographic superconductors from the coupling of a...
Using linear response theory, we analyze the electromagnetic response functions of generalized holog...
AbstractIn this Letter, based on the Sturm–Liouville eigenvalue approach, we analytically investigat...
Abstract We analytically as well as numerically study the effects of Born–Infeld nonlinear electrody...
AbstractWe extend the analytical studies on the properties of s-wave holographic superconductors in ...
We extend the analytical studies on the properties of s-wave holographic superconductors in the pres...
Based on the Sturm-Liouville (SL) eigenvalue problem, we analytically study several properties of ho...
Based on the Sturm-Liouville (SL) eigenvalue problem, we analytically study several properties of ho...
AbstractWe extend the analytical studies on the properties of s-wave holographic superconductors in ...
We analytically and numerically investigate the properties of s-wave holographic superconductors by ...
We analytically and numerically study the properties of one-dimensional holographic p-wave supercond...
We investigate analytically as well as numerically the properties of s-wave holographic superconduct...
Abstract We analytically and numerically disclose the effects of the higher-order correction terms i...
In this paper, based on the Sturm-Liouville eigenvalue problem, we analytically investigate several ...
In this thesis we study two different aspects of holographic superconductivity. First we study fully...
We investigate the properties of the backreacting holographic superconductors from the coupling of a...
Using linear response theory, we analyze the electromagnetic response functions of generalized holog...
AbstractIn this Letter, based on the Sturm–Liouville eigenvalue approach, we analytically investigat...
Abstract We analytically as well as numerically study the effects of Born–Infeld nonlinear electrody...
AbstractWe extend the analytical studies on the properties of s-wave holographic superconductors in ...
We extend the analytical studies on the properties of s-wave holographic superconductors in the pres...
Based on the Sturm-Liouville (SL) eigenvalue problem, we analytically study several properties of ho...
Based on the Sturm-Liouville (SL) eigenvalue problem, we analytically study several properties of ho...
AbstractWe extend the analytical studies on the properties of s-wave holographic superconductors in ...
We analytically and numerically investigate the properties of s-wave holographic superconductors by ...
We analytically and numerically study the properties of one-dimensional holographic p-wave supercond...
We investigate analytically as well as numerically the properties of s-wave holographic superconduct...
Abstract We analytically and numerically disclose the effects of the higher-order correction terms i...
In this paper, based on the Sturm-Liouville eigenvalue problem, we analytically investigate several ...
In this thesis we study two different aspects of holographic superconductivity. First we study fully...
We investigate the properties of the backreacting holographic superconductors from the coupling of a...
Using linear response theory, we analyze the electromagnetic response functions of generalized holog...
AbstractIn this Letter, based on the Sturm–Liouville eigenvalue approach, we analytically investigat...