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20182024
most citedNear-term to distillation protocols using graph codes

16 citations · 39 across the 9 of their papers we have counts for

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quant-ph2024★ 3 cited

WaveguideQED.jl: An Efficient Framework for Simulating Non-Markovian Waveguide Quantum Electrodynamics

Matias Bundgaard-Nielsen, Dirk Englund, Mikkel Heuck +1

In this paper, we introduce a numerical framework designed to solve problems within the emerging field of Waveguide Quantum Electrodynamics (WQED). The framework is based on collis…

quant-ph2023★ 1 cited

Faster-than-Clifford Simulations of Entanglement Purification Circuits and Their Full-stack Optimization

Vaishnavi L. Addala, Shu Ge, Stefan Krastanov

Quantum Entanglement is a fundamentally important resource in Quantum Information Science; however, generating it in practice is plagued by noise and decoherence, limiting its util…

quant-ph2023★ 1 cited

Quantum theory of single-photon nonlinearities generated by ensembles of emitters

Kurt Jacobs, Stefan Krastanov, Mikkel Heuck +1

The achievement of sufficiently fast interactions between two optical fields at the few-photon level would provide a key enabler for a broad range of quantum technologies. One crit…

quant-ph2023★ 16 cited

Near-term to distillation protocols using graph codes

Kenneth Goodenough, Sébastian de Bone, Vaishnavi L. Addala +4

Noisy hardware forms one of the main hurdles to the realization of a near-term quantum internet. Distillation protocols allows one to overcome this noise at the cost of an increase…

quant-ph2022

Spin-Phonon-Photon Strong Coupling in a Piezomechanical Nanocavity

Hamza Raniwala, Stefan Krastanov, Lisa Hackett +3

We introduce a hybrid tripartite quantum system for strong coupling between a semiconductor spin, a mechanical phonon, and a microwave photon. Consisting of a piezoelectric resonat…

quant-ph2020

Optically-Heralded Entanglement of Superconducting Systems in Quantum Networks

Stefan Krastanov, Hamza Raniwala, Jeffrey Holzgrafe +4

Networking superconducting quantum computers is a longstanding challenge in quantum science. The typical approach has been to cascade transducers: converting to optical frequencies…