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From the 1 of 7 linked papers with an AI index.

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20242026
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7 papers

quant-ph2026

Foliated Quantum Error Correction for Qudits

Gözde Üstün, Simon J. Devitt, Jason Saied

The paper introduces a method to convert any Pauli‑based quantum error‑correcting code for prime‑dimensional qudits into a foliated graph‑state form that enables fault‑tolerant mea…

quant-ph2026

Qudit Designs and Where to Find Them

Namit Anand, Jeffrey Marshall, Jason Saied +2

Unitary t-designs are some of the most versatile tools in quantum information theory. Their applications range from randomized benchmarking and shadow tomography, to more fundament…

quant-ph2026

Below-threshold error reduction in single photons through photon distillation

F. H. B. Somhorst, J. Saied, N. Kannan +14

Photonic quantum computers use the bosonic statistics of photons to construct, through quantum interference, the large entangled states required for measurement-based quantum compu…

quant-ph2025

Extracting the photon indistinguishability error from measurable quantum observables

Franciscus H. B. Somhorst, Jason Saied, Eleanor G. Rieffel +1

We present a method to extract the photon indistinguishability error from Hong-Ou-Mandel interference measurements, accounting for the combined effects of loss and multiphoton nois…

quant-ph2025

Fusion for High-Dimensional Linear Optical Quantum Computing with Improved Success Probability

Gözde Üstün, Eleanor G. Rieffel, Simon J. Devitt +1

Type-II fusion is a probabilistic entangling measurement that is essential to measurement-based linear optical quantum computing and can be used for quantum teleportation more broa…

quant-ph2025

General protocols for the efficient distillation of indistinguishable photons

Jason Saied, Jeffrey Marshall, Namit Anand +1

We introduce state-of-the-art protocols to distill indistinguishable photons, reducing distinguishability error rates by a factor of , while using a modest amount of resources s…