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quant-ph2026

Characterization of errors in photon-heralded quantum operations between non-interacting quantum emitters

Mahsa Karimi, Samuel Mister, Christoph Simon +1

We develop an analytic perturbative framework that enables the analysis of small Markovian errors in probabilistic, photon-heralded quantum operations between non-interacting emitt…

quant-ph2026

Comparing the performance of practical two-qubit gates for individual Yb ions in yttrium orthovanadate

Mahsa Karimi, Faezeh Kimiaee Asadi, Stephen C. Wein +1

In this paper, we investigate three schemes for implementing Controlled-Z (CZ) gates between individual ytterbium (Yb) rare-earth ions doped into yttrium orthovanadate (YVO or…

quant-ph2025

Incoherent behavior of partially distinguishable photons

Emilio Annoni, Stephen C. Wein

Photon distinguishability is a key factor limiting quantum interference in photonic devices, directly impacting the performance of protocols such as Boson Sampling and photonic qua…

quant-ph2025

Deterministic and reconfigurable graph state generation with a single solid-state quantum emitter

H. Huet, P. R. Ramesh, S. C. Wein +11

Measurement-based quantum computing offers a promising route towards scalable, universal photonic quantum computation. This approach relies on the deterministic and efficient gener…

quant-ph2024

A deterministic and efficient source of frequency-polarization hyper-encoded photonic qubits

N. Coste, D. A. Fioretto, S. E. Thomas +12

The frequency or color of photons is an attractive degree of freedom to encode and distribute the quantum information over long distances. However, the generation of frequency-enco…

quant-ph2024

A Spin-Optical Quantum Computing Architecture

Grégoire de Gliniasty, Paul Hilaire, Pierre-Emmanuel Emeriau +3

We introduce an adaptable and modular hybrid architecture designed for fault-tolerant quantum computing. It combines quantum emitters and linear-optical entangling gates to leverag…