activity
20242026
collaborators

17 papers

quant-ph2026

Adaptive Spectroscopy of Fast Two-Level-System Dynamics in Superconducting Qubits

Fabrizio Berritta, David Pahl, Lukas Pahl +15

Parasitic two-level-system (TLS) defects are a major source of energy relaxation and temporal instability in superconducting quantum processors. Our sub-second adaptive spectroscop…

quant-ph2026

Hardware-efficient erasure-error detection with an integer fluxonium

Junyoung An, Helin Zhang, Jeffrey M. Gertler +13

The paper demonstrates hardware‑efficient erasure‑error detection and conversion using an integer fluxonium qubit, showing improved state lifetimes and reduced gate errors by detec…

quant-ph2026

Numerical Modeling of Quasiparticle-Induced Dissipation in Fluxonium Qubits

Kate Azar, Max Hays, Kyle Serniak

Nonequilibrium quasiparticles (QPs) generated by stray infrared and ionizing radiation can limit the performance of superconducting quantum processors and present challenges for qu…

quant-ph2026

Distinguishing types of correlated errors in superconducting qubits

Hannah P. Binney, H. Douglas Pinckney, Kate Azar +15

Errors in superconducting qubits that are correlated in time and space can pose problems for quantum error correction codes. Radiation from cosmic and terrestrial sources can incre…

quant-ph2026

Enhanced Sensitivity near a Quantum Exceptional Point in the Absence of Engineered Dissipation

Réouven Assouly, Harry Hanlim Kang, Aziza Almanakly +8

Non-Hermitian systems exhibit phenomena absent from Hermitian systems, including exceptional points (EPs), at which two or more eigenvectors coalesce. Conventional implementations…

quant-ph2026

Driven-dissipative entanglement of distant giant atoms

Aziza Almanakly, Ariadna Soro, Alejandro Vivas-Viaña +15

Quantum interconnects distribute entanglement via controlled light-matter interactions for quantum computing and sensing applications. Many entanglement generation schemes use cohe…