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20182026
most citedRealizing a Deterministic Source of Multipartite-Entangled Photonic Qubits

81 citations · 81 across the 2 of their papers we have counts for

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quant-ph2026

A Modular Cryogenic Link for Microwave Quantum Communication Over Distances of Tens of Meters

Josua D. Schär, Simon Storz, Paul Magnard +6

Quantum technologies promise a radically new way to solve classically intractable computing problems. Superconducting circuits as a platform are at the forefront of this field. The…

quant-ph2025

Enhancing dissipative cat qubit protection by squeezing

Rémi Rousseau, Diego Ruiz, Emanuele Albertinale +38

Dissipative cat-qubits are a promising architecture for quantum processors due to their built-in quantum error correction. By leveraging two-photon stabilization, they achieve an e…

quant-ph2023

Enhancing Dispersive Readout of Superconducting Qubits Through Dynamic Control of the Dispersive Shift: Experiment and Theory

François Swiadek, Ross Shillito, Paul Magnard +9

The performance of a wide range of quantum computing algorithms and protocols depends critically on the fidelity and speed of the employed qubit readout. Examples include gate sequ…

quant-ph2020

Microwave Quantum Link between Superconducting Circuits Housed in Spatially Separated Cryogenic Systems

Paul Magnard, Simon Storz, Philipp Kurpiers +10

Superconducting circuits are a strong contender for realizing quantum computing systems, and are also successfully used to study quantum optics and hybrid quantum systems. However,…

quant-ph2020

Demonstration of an All-Microwave Controlled-Phase Gate between Far Detuned Qubits

S. Krinner, P. Kurpiers, B. Royer +6

A challenge in building large-scale superconducting quantum processors is to find the right balance between coherence, qubit addressability, qubit-qubit coupling strength, circuit…

quant-ph202081 cited

Realizing a Deterministic Source of Multipartite-Entangled Photonic Qubits

Jean-Claude Besse, Kevin Reuer, Michele C. Collodo +11

Sources of entangled electromagnetic radiation are a cornerstone in quantum information processing and offer unique opportunities for the study of quantum many-body physics in a co…