We consider the effects of an externally applied electrostatic field on superconductivity, self-consistently within a BCS mean-field model, for a clean three-dimensional (3D) metal thin film. The electrostatic change in superconducting condensation energy scales as Δ/μ close to subband edges as a function of the Fermi energy μ and follows 3D scaling (Δ/μ)2 away from them. We discuss nonlinearities beyond the gate effect and contrast results with recent experiments on gating effects on Josephson junctions.peerReviewe
The electrochemical gating technique is a powerful tool to tune the surface conduction properties o...
The scaling analysis of voltage vs. current curves has been an invaluable tool in the study of the n...
A key aspect of field effect experiments is the possibility to induce charges on the first layers of...
In this paper we use a Ginzburg-Landau approach to show that a suitably strong electric field can dr...
We investigate the effects of pure charge doping (obtained by using the so-called electric-double la...
International audienceIn this paper, we use a Ginzburg-Landau approach to show that a suitably stron...
In this Letter we use a Ginzburg-Landau approach to show that a suitably strong electric field can d...
We calculate the effect of a static electric field on the critical temperature of a s-wave one band ...
We calculate the effect of a static electric field on the critical temperature of a s-wave one band ...
The transport critical current, Ic, is usually defined in terms of a threshold electric field criter...
In their original formulation of superconductivity, the London brothers predicted1 the exponential s...
We predict that superconductivity in mesoscopic thin films can be stabilized in high magnetic fields...
Universal self-field critical current for thin-film superconductors E.F. Talantsev1 & J.L. Tallo...
We calculate the effect of a static electric field on the critical temperature of a s-wave one band ...
The electrochemical gating technique is a powerful tool to tune the surface conduction properties of...
The electrochemical gating technique is a powerful tool to tune the surface conduction properties o...
The scaling analysis of voltage vs. current curves has been an invaluable tool in the study of the n...
A key aspect of field effect experiments is the possibility to induce charges on the first layers of...
In this paper we use a Ginzburg-Landau approach to show that a suitably strong electric field can dr...
We investigate the effects of pure charge doping (obtained by using the so-called electric-double la...
International audienceIn this paper, we use a Ginzburg-Landau approach to show that a suitably stron...
In this Letter we use a Ginzburg-Landau approach to show that a suitably strong electric field can d...
We calculate the effect of a static electric field on the critical temperature of a s-wave one band ...
We calculate the effect of a static electric field on the critical temperature of a s-wave one band ...
The transport critical current, Ic, is usually defined in terms of a threshold electric field criter...
In their original formulation of superconductivity, the London brothers predicted1 the exponential s...
We predict that superconductivity in mesoscopic thin films can be stabilized in high magnetic fields...
Universal self-field critical current for thin-film superconductors E.F. Talantsev1 & J.L. Tallo...
We calculate the effect of a static electric field on the critical temperature of a s-wave one band ...
The electrochemical gating technique is a powerful tool to tune the surface conduction properties of...
The electrochemical gating technique is a powerful tool to tune the surface conduction properties o...
The scaling analysis of voltage vs. current curves has been an invaluable tool in the study of the n...
A key aspect of field effect experiments is the possibility to induce charges on the first layers of...