Comparison of schemes for highly loss tolerant photonic fusion based quantum computing

Fuente: arXiv
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Main Authors: Bartolucci, Sara, Bell, Tom, Bombin, Hector, Birchall, Patrick, Bulmer, Jacob, Dawson, Christopher, Farrelly, Terry, Gartenstein, Samuel, Gimeno-Segovia, Mercedes, Litinski, Daniel, Liu, Yehua, Knegjens, Robert, Nickerson, Naomi, Olivo, Andrea, Pant, Mihir, Patil, Ashlesha, Roberts, Sam, Rudolph, Terry, Sparrow, Chris, Tuckett, David, Veitia, Andrzej
Format: Preprint
Published: 2025
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author Bartolucci, Sara
Bell, Tom
Bombin, Hector
Birchall, Patrick
Bulmer, Jacob
Dawson, Christopher
Farrelly, Terry
Gartenstein, Samuel
Gimeno-Segovia, Mercedes
Litinski, Daniel
Liu, Yehua
Knegjens, Robert
Nickerson, Naomi
Olivo, Andrea
Pant, Mihir
Patil, Ashlesha
Roberts, Sam
Rudolph, Terry
Sparrow, Chris
Tuckett, David
Veitia, Andrzej
author_facet Bartolucci, Sara
Bell, Tom
Bombin, Hector
Birchall, Patrick
Bulmer, Jacob
Dawson, Christopher
Farrelly, Terry
Gartenstein, Samuel
Gimeno-Segovia, Mercedes
Litinski, Daniel
Liu, Yehua
Knegjens, Robert
Nickerson, Naomi
Olivo, Andrea
Pant, Mihir
Patil, Ashlesha
Roberts, Sam
Rudolph, Terry
Sparrow, Chris
Tuckett, David
Veitia, Andrzej
contents We summarize the performance of recently-proposed methods for achieving fault tolerant fusions-based quantum computation with high tolerance to qubit loss, specifically aimed at photonic implementations.
format Preprint
id arxiv_https___arxiv_org_abs_2506_11975
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Comparison of schemes for highly loss tolerant photonic fusion based quantum computing
Bartolucci, Sara
Bell, Tom
Bombin, Hector
Birchall, Patrick
Bulmer, Jacob
Dawson, Christopher
Farrelly, Terry
Gartenstein, Samuel
Gimeno-Segovia, Mercedes
Litinski, Daniel
Liu, Yehua
Knegjens, Robert
Nickerson, Naomi
Olivo, Andrea
Pant, Mihir
Patil, Ashlesha
Roberts, Sam
Rudolph, Terry
Sparrow, Chris
Tuckett, David
Veitia, Andrzej
Quantum Physics
We summarize the performance of recently-proposed methods for achieving fault tolerant fusions-based quantum computation with high tolerance to qubit loss, specifically aimed at photonic implementations.
title Comparison of schemes for highly loss tolerant photonic fusion based quantum computing
topic Quantum Physics
url https://arxiv.org/abs/2506.11975