collaborators

10 papers

quant-ph2025

Crosstalk Dispersion and Spatial Scaling in Superconducting Qubit Arrays

Mohammed Alghadeer, Simon Pettersson Fors, Shuxiang Cao +5

Crosstalk between qubits fundamentally limits the scalability of quantum processors, necessitating physics-based models that can handle the complexity of large qubit arrays. Here,…

quant-ph2025

Double-Bracket Algorithmic Cooling

Mohammed Alghadeer, Khanh Uyen Giang, Shuxiang Cao +6

Algorithmic cooling shows that it is possible to locally reduce the entropy of a qubit belonging to an isolated ensemble such as nuclear spins in molecules or nitrogen-vacancy cent…

quant-ph2025

Dynamic Josephson Junction Metasurfaces for Multiplexed Control of Superconducting Qubits

Mustafa Bakr

Scaling superconducting quantum processors to large qubit counts faces challenges in control signal delivery, thermal management, and hardware complexity, particularly in achieving…

quant-ph2025

Intrinsic Multi-Mode Interference for Passive Suppression of Purcell Decay in Superconducting Circuits

Mustafa Bakr, Mohammed Alghadeer, Simon Pettersson Fors +6

Decoherence due to radiative decay remains an important consideration in scaling superconducting quantum processors. We introduce a passive, interference-based methodology for supp…

cs.AI2025

Agents for self-driving laboratories applied to quantum computing

Shuxiang Cao, Zijian Zhang, Mohammed Alghadeer +5

Fully automated self-driving laboratories are promising to enable high-throughput and large-scale scientific discovery by reducing repetitive labour. However, effective automation…

quant-ph2025

Low Crosstalk in a Scalable Superconducting Quantum Lattice

Mohammed Alghadeer, Shuxiang Cao, Simone D Fasciati +5

Superconducting quantum circuits are a key platform for advancing quantum information processing and simulation. Scaling efforts currently encounter challenges such as Josephson-ju…