collaborators

10 papers

quant-ph2026

Probing the memory of a superconducting qubit environment

Nicolas Gosling, Denis Bénâtre, Nicolas Zapata +8

Achieving fault tolerance with superconducting quantum processors requires qubits to operate within the regime of threshold theorems based on the Born-Markov approximation. This ap…

quant-ph2025

Double-Pumped Kerr Parametric Amplifier Beyond the Gain-Bandwidth Limit

Nicolas Zapata, Najmeh Etehadi Abari, Mitchell Field +5

Superconducting standingwave parametric amplifiers are crucial for the readout of microwave quantum devices. Despite significant improvements in recent years, the need to operat…

quant-ph2025

Liquid metal printing for superconducting circuits

Alexander Kreiner, Navid Hussain, Ritika Dhundhwal +10

Superconducting circuits are a promising platform for implementing fault-tolerant quantum computers, quantum limited amplifiers, ultra-low power superconducting electronics, and se…

quant-ph2025

Quantum Coherence in Superconducting Vortex States

Ameya Nambisan, Simon Günzler, Dennis Rieger +13

Abrikosov vortices, where the superconducting gap is completely suppressed in the core, are dissipative, semi-classical entities that impact applications from high-current-density…

quant-ph2025

Spin Environment of a Superconducting Qubit in High Magnetic Fields

S. Günzler, J. Beck, D. Rieger +9

Superconducting qubits equipped with quantum non-demolition readout and active feedback can be used as information engines to probe and manipulate microscopic degrees of freedom, w…

quant-ph2025

On-chip stencil lithography for superconducting qubits

Roudy Hanna, Sören Ihssen, Simon Geisert +22

Improvements in circuit design and more recently in materials and surface cleaning have contributed to a rapid development of coherent superconducting qubits. However, organic resi…