arXiv · 2507.12150
Local control of parity and charge in nanoscale superconducting lead islands
Abstract
Small superconducting islands can exhibit charge quantization, where Coulomb interactions compete with Cooper pairing. Using scanning tunneling spectroscopy, we probe this interplay by measuring the charging energy ($E_C$) and the pairing energy ($\Delta$) of individual nano-islands. Below a critical island size, where $E_C > \Delta$, we observe a crossover between even and odd parity ground states. By applying controlled voltage pulses, we continuously tune the island's electrostatic potential and map the full charge-parity landscape. These results demonstrate tunable superconducting ground states, offering a potential platform for qubit design and control.
Explore related subjects
Keep this discovery
Stefano Trivini, Jon Ortuzar, Katerina Vaxevani, Beatriz Viña-Bausá, F. Sebastian Bergeret, Jose Ignacio Pascual. 2025-07-16. Local control of parity and charge in nanoscale superconducting lead islands. https://arxiv.org/abs/2507.12150
Cite the original work for its findings. Save a collection to share your selection of sources.