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