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Local Control of Parity and Charge in Nanoscale Superconducting Lead Islands
Stefano Trivini1, Jon Ortuzar1, Katerina Vaxevani1
1CIC nanoGUNE-BRTA, 20018 Donostia-San Sebastián, Spain.
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 (Δ) of individual Pb nanoislands. Below a critical island size, where E_{C}>Δ, 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.
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