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4 papers

quant-ph2026

Optimizing CMOS-compatible, superconducting titanium nitride resonators: Deposition conditions and structuring processes

Simon J. K. Lang, Alexandra Schewski, Ignaz Eisele +10

The paper investigates how deposition conditions, etching power, and resist‑strip temperature influence the performance of superconducting titanium nitride coplanar waveguide reson…

quant-ph2026

Surface Optimization of Superconducting Aluminum Resonators for Robust Quantum Device Fabrication

Simon J. K. Lang, Ignaz Eisele, Alwin Maiwald +8

The paper studies surface treatment methods for aluminum superconducting resonators to maintain low dielectric loss after a 24‑hour ambient exposure, finding that selective oxide r…

quant-ph2026

A Versatile Analytical Model for Fast and Accurate Determination of Feedline-Coupled Resonators for Superconducting Qubit Readout

Zhen Luo, Lea Richard, Ivan Tsitsilin +4

Superconducting quantum chips commonly utilize quarter-wavelength (λ/4) transmission line resonators as readout circuits. An analytical model for the accurate determination of res…

cond-mat.mtrl-sci2026

Enhanced Tantalum Superconducting Resonator Performance via All-Surface Organic Monolayer Passivation

Harsh Gupta, Moritz Singer, Benedikt Schoof +4

Tantalum is a promising platform for superconducting quantum circuits, yet coherence times remain limited by dielectric losses from interfacial two-level systems (TLS), exacerbated…