Shape resonances and shell effects in thin-film multiband superconductors
arXiv:1311.0698 · doi:10.1103/PhysRevB.89.024510
Abstract
We study analytically the evolution of superconductivity in clean quasi-two-dimensional multiband supercon- ductors as the film thickness enters the nanoscale region by mean-field and semiclassical techniques. Tunneling into the substrate and finite lateral size effects, which are important in experiments, are also considered in our model. As a result, it is possible to investigate the interplay between quantum coherence effects, such as shape resonances and shell effects, with the potential to enhance superconductivity, and the multiband structure and the coupling to the substrate that tend to suppress it. The case of magnesium diboride, which is the conventional superconductor with the highest critical temperature, is discussed in detail. Once the effect of the substrate is considered, we still observe quantum size effects such as the oscillation of the critical temperature with the thickness but without a significant enhancement of superconductivity. In thin films with a sufficiently longer superconducting coherence length, it is, however, possible to increase the critical temperature above the bulk limit by tuning the film thickness or lateral size.
11 pages, 8 figures
References in corpus (5)
- High-temperature interface superconductivity between metallic and insulating cuprates
- Type-1.5 Superconductors
- Observation of shell effects in superconducting nanoparticles of Sn
- Resonant and crossover phenomena in a multiband superconductor tuning the chemical potential near a band edge
- Critical temperature of MgB ultrathin superconducting films: BCS model calculations in tight-binding approximation
Cited by in corpus (6)
- Networks of superconducting nano-puddles in 1/8 doped YBa2Cu3O6.5+y controlled by thermal manipulation
- Rise and fall of shape resonances in thin films of BCS superconductors
- BCS superconductivity near the band edge: Exact results for one and several bands
- Multifaceted impact of a surface step on superconductivity in atomically thin films
- Periodicity of superconducting shape resonances in thin films
- Orbital effect on the in-plane critical field in free-standing superconducting nanofilms