activity
20242026
collaborators

8 papers

quant-ph2026

Scalable Single-Step Generation of W States in 2D Superconducting Qubit Lattices

João H. Romeiro, Federico A. Roy, Niklas Bruckmoser +13

The reliable generation of multi-qubit entanglement is a prerequisite for large-scale quantum information technologies. In particular, W states are a valuable resource owing to the…

quant-ph2025

Superconducting Qubit Gates Robust to Parameter Fluctuations

Emily Wright, Leo Van Damme, Niklas J. Glaser +14

State-of-the-art single-qubit gates on superconducting transmon qubits can achieve the fidelities required for error-corrected computations. However, parameter fluctuations due to…

quant-ph2025

Parametric multi-element coupling architecture for coherent and dissipative control of superconducting qubits

G. B. P. Huber, F. A. Roy, L. Koch +20

As systems for quantum computing keep growing in size and number of qubits, challenges in scaling the control capabilities are becoming increasingly relevant. Efficient schemes to…

quant-ph2025

Sub-Harmonic Control of a Fluxonium Qubit via a Purcell-Protected Flux Line

Johannes Schirk, Florian Wallner, Longxiang Huang +21

Protecting qubits from environmental noise while maintaining strong coupling for fast high-fidelity control is a central challenge for quantum information processing. Here, we demo…

cond-mat.mtrl-sci2025

High temporal stability of niobium superconducting resonators by surface passivation with organophosphonate self-assembled monolayers

Harsh Gupta, Rui Pereira, Leon Koch +6

One main limiting factor towards achieving high coherence times in superconducting circuits is two level system (TLS) losses. Mitigating such losses requires controlling the format…

quant-ph2025

Fabrication of low-loss Josephson parametric devices

K. E. Honasoge, M. Handschuh, W. K. Yam +7

Superconducting circuits incorporating Josephson elements represent a promising hardware platform for quantum technologies. Potential applications include scalable quantum computin…