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From the 1 of 5 linked papers with an AI index.

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5 papers

quant-ph2026

Deterministic single-electron trapping on solid neon using engineered dielectric surface geometry

Kundan Surse, Eric Helgemo, Andrew Palmer +5

The paper proposes using a patterned dielectric layer beneath solid neon to create controlled trapping sites for single electrons, improving qubit stability by reducing unwanted su…

cond-mat.mes-hall2026

Decoherence of Majorana qubits by 1/f noise

Abhijeet Alase, Marcus C. Goffage, Maja C. Cassidy +1

Qubits based on Majorana zero modes (MZMs) in superconductor-semiconductor nanowires have attracted intense interest due to claims that their error rates are suppressed exponential…

cond-mat.mes-hall2025

Excitation of quasiparticle pairs in superconducting nanodevices by 1/f noise

Clare C. Yu, M. C. Goffage, Yifan Wang +3

Superconducting nanodevices such as qubits, resonators, and photodetectors, have revolutionized our capabilities for probing and controlling quantum phenomena. Nonequilibrium quasi…

cond-mat.mes-hall2025

Characterizing Neon Thin Film Growth with an NbTiN Superconducting Resonator Array

Kyle Matkovic, Patrick Russell, Andrew Palmer +6

Electrons levitating above the surface of solid neon have recently emerged as a promising platform for high-quality qubits. The morphology and uniformity of the neon growth in thes…

quant-ph2025

Leakage at zero temperature from changes in chemical potential in Majorana qubits

M. C. Goffage, A. Alase, M. C. Cassidy +1

Building a fault-tolerant quantum computer requires physical qubits with exceptionally low error rates. Majorana-based tetron qubits are predicted to exhibit error rates that decre…