Induced superconductivity and engineered Josephson tunneling devices in epitaxial (111)-oriented gold/vanadium heterostructures
arXiv:1601.07591 · doi:10.1021/acs.nanolett.6b00361
Abstract
We report a unique experimental approach to create topological superconductors by inducing superconductivity into epitaxial metallic thin film with strong spin-orbit coupling. Utilizing molecular beam epitaxy technique under ultra-high vacuum condition, we are able to achieve (111) oriented single phase of gold (Au) thin film grown on a well-oriented vanadium (V) s-wave superconductor film with clean interface. We obtained atomically smooth Au thin films with thicknesses even down to below a nanometer showing near-ideal surface quality. The as-grown V/Au bilayer heterostructure exhibits superconducting transition at around 4 K. Clear Josephson tunneling and Andreev reflection are observed in S-I-S tunnel junctions fabricated from the epitaxial bi-layers. The barrier thickness dependent tunneling and the associated subharmonic gap structures (SGS) confirmed the induced superconductivity in Au (111), paving the way for engineering thin film heterostructure based p-wave superconductors and nano devices for Majorana fermion.
References in corpus (7)
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- New Perspectives for Rashba Spin-Orbit Coupling
- Evidence of Majorana fermions in an Al - InAs nanowire topological superconductor
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- Anomalous modulation of a zero bias peak in a hybrid nanowire-superconductor device
- A Semiconductor Nanowire-Based Superconducting Qubit
- Multichannel Generalization of Kitaev's Majorana End States and a Practical Route to Realize Them in Thin Films
Cited by in corpus (4)
- Ubiquitous Superconducting Diode Effect in Superconductor Thin Films
- Signature of a pair of Majorana zero modes in superconducting gold surface states
- Superconductivity in the surface state of noble metal gold and its Fermi level tuning by EuS dielectric
- Signatures of a Spin-Active Interface and Locally Enhanced Zeeman field in a Superconductor-Chiral Material Heterostructure