Shaping graphene superconductivity with nanometer precision
arXiv:2401.09288 · doi:10.1002/smll.202308439
Abstract
Graphene holds great potential for superconductivity due to its pure two-dimensional nature, the ability to tune its carrier density through electrostatic gating, and its unique, relativistic-like electronic properties. At present, we are still far from controlling and understanding graphene superconductivity, mainly because the selective introduction of superconducting properties to graphene is experimentally very challenging. Here, we have developed a method that enables shaping at will graphene superconductivity through a precise control of graphene-superconductor junctions. The method combines the proximity effect with scanning tunnelling microscope (STM) manipulation capabilities. We first grow Pb nano-islands that locally induce superconductivity in graphene. Using a STM, Pb nano-islands can be selectively displaced, over different types of graphene surfaces, with nanometre scale precision, in any direction, over distances of hundreds of nanometres. This opens an exciting playground where a large number of predefined graphene-superconductor hybrid structures can be investigated with atomic scale precision. To illustrate the potential, we perform a series of experiments, rationalized by the quasi-classical theory of superconductivity, going from the fundamental understanding of superconductor-graphene-superconductor heterostructures to the construction of superconductor nanocorrals, further used as "portable" experimental probes of local magnetic moments in graphene.
References in corpus (12)
- Observation of Majorana Fermions in Ferromagnetic Atomic Chains on a Superconductor
- Andreev reflection and Klein tunneling in graphene
- Bipolar supercurrent in graphene
- Tunable Phase Boundaries and Ultra-Strong Coupling Superconductivity in Mirror Symmetric Magic-Angle Trilayer Graphene
- Atomic-scale control of graphene magnetism using hydrogen atoms
- Phase Coherent Transport of Charges in Graphene Quantum Billiard
- Few layers graphene on 6H-SiC(000-1): an STM study
- Quasiparticle Chirality in Epitaxial Graphene Probed at the Nanometer Scale
- Magnetic Interference Patterns and Vortices in Diffusive SNS junctions
- Density of states and supercurrent in diffusive SNS junctions: role of nonideal interfaces and spin-flip scattering
- Inducing Kondo Screening of Vacancy Magnetic Moments in Graphene with Gating and Local Curvature
- Gate-tunable Superconductivity in Hybrid InSb-Pb Nanowires