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Autores principales: Sinclair, Neil, Davis, Samantha I., Lauk, Nikolai, Li, Chang, Musk, Damian R., Taylor, Kelsie, Valivarthi, Raju, Spiropulu, Maria
Formato: Preprint
Publicado: 2025
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Acceso en línea:https://arxiv.org/abs/2503.18306
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author Sinclair, Neil
Davis, Samantha I.
Lauk, Nikolai
Li, Chang
Musk, Damian R.
Taylor, Kelsie
Valivarthi, Raju
Spiropulu, Maria
author_facet Sinclair, Neil
Davis, Samantha I.
Lauk, Nikolai
Li, Chang
Musk, Damian R.
Taylor, Kelsie
Valivarthi, Raju
Spiropulu, Maria
contents We develop analytical models for realistic photonic quantum teleportation experiments with time-bin qubits, utilizing phase space methods from quantum optics. These models yield analytical expressions for Hong-Ou-Mandel interference visibilities and qubit fidelities, accounting for imperfections such as loss, photon distinguishability, and unwanted multi-photon events in single and entangled photon sources. Our expressions agree with the Hong-Ou-Mandel interference visibilities and teleportation fidelities reported by Valivarthi et al. (PRX Quantum 1, 020317, 2020). We use these models to predict and analyze the outcomes of future teleportation experiments under varying degrees of imperfections.
format Preprint
id arxiv_https___arxiv_org_abs_2503_18306
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Analytical Modeling of Real-World Photonic Quantum Teleportation
Sinclair, Neil
Davis, Samantha I.
Lauk, Nikolai
Li, Chang
Musk, Damian R.
Taylor, Kelsie
Valivarthi, Raju
Spiropulu, Maria
Quantum Physics
We develop analytical models for realistic photonic quantum teleportation experiments with time-bin qubits, utilizing phase space methods from quantum optics. These models yield analytical expressions for Hong-Ou-Mandel interference visibilities and qubit fidelities, accounting for imperfections such as loss, photon distinguishability, and unwanted multi-photon events in single and entangled photon sources. Our expressions agree with the Hong-Ou-Mandel interference visibilities and teleportation fidelities reported by Valivarthi et al. (PRX Quantum 1, 020317, 2020). We use these models to predict and analyze the outcomes of future teleportation experiments under varying degrees of imperfections.
title Analytical Modeling of Real-World Photonic Quantum Teleportation
topic Quantum Physics
url https://arxiv.org/abs/2503.18306