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Bibliographic Details
Main Authors: Teja, G. P., Filip, Radim
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2601.15019
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author Teja, G. P.
Filip, Radim
author_facet Teja, G. P.
Filip, Radim
contents Measurement-based quantum computation (MBQC) offers a promising paradigm for photonic quantum computing, but its implementation requires the generation of specific non-Gaussian resource states. While continuous-variable encodings such as the highly complex (GKP) states have been widely studied, the much simpler binomial codes offer an experimentally accessible alternative, though they demand a distinct set of operational tools. Here, we present a toolkit for MBQC using optical binomial codes, detailing a cavity-QED protocol for conditional generation of cluster states and the implementation of Pauli measurements. Our work proposes the first steps for existing optical atom-cavity architectures to lay the groundwork for their use in quantum computation.
format Preprint
id arxiv_https___arxiv_org_abs_2601_15019
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Cavity-QED tools for MBQC with optical binomial-codes
Teja, G. P.
Filip, Radim
Quantum Physics
Measurement-based quantum computation (MBQC) offers a promising paradigm for photonic quantum computing, but its implementation requires the generation of specific non-Gaussian resource states. While continuous-variable encodings such as the highly complex (GKP) states have been widely studied, the much simpler binomial codes offer an experimentally accessible alternative, though they demand a distinct set of operational tools. Here, we present a toolkit for MBQC using optical binomial codes, detailing a cavity-QED protocol for conditional generation of cluster states and the implementation of Pauli measurements. Our work proposes the first steps for existing optical atom-cavity architectures to lay the groundwork for their use in quantum computation.
title Cavity-QED tools for MBQC with optical binomial-codes
topic Quantum Physics
url https://arxiv.org/abs/2601.15019