Indistinguishability-assisted two-qubit entanglement distillation

Fuente: arXiv
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Autori principali: Nosrati, Farzam, Bellomo, Bruno, De Chiara, Gabriele, Compagno, Giuseppe, Morandotti, Roberto, Franco, Rosario Lo
Natura: Preprint
Pubblicazione: 2023
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author Nosrati, Farzam
Bellomo, Bruno
De Chiara, Gabriele
Compagno, Giuseppe
Morandotti, Roberto
Franco, Rosario Lo
author_facet Nosrati, Farzam
Bellomo, Bruno
De Chiara, Gabriele
Compagno, Giuseppe
Morandotti, Roberto
Franco, Rosario Lo
contents Production of quantum states exhibiting a high degree of entanglement out of noisy conditions is one of the main goals of quantum information science. Here, we provide a conditional yet efficient entanglement distillation method which functions within the framework of spatially localized operations and classical communication. This method exploits indistinguishability effects due to the spatial overlap between two identical qubits in distinct sites and encompasses particle statistics imprint. We derive the general conditions for the maximum entanglement distillation out of mixed states. As applications, we give a thorough description of distilled entanglement and associated success probability starting from typical noisy states, such as thermal Gibbs states and Werner states. The influence of local temperatures and of noise parameter is discussed, respectively, in these two cases. The proposed scheme paves the way towards quantum repeaters in composite networks made of controllable identical quantum particles.
format Preprint
id arxiv_https___arxiv_org_abs_2305_11964
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Indistinguishability-assisted two-qubit entanglement distillation
Nosrati, Farzam
Bellomo, Bruno
De Chiara, Gabriele
Compagno, Giuseppe
Morandotti, Roberto
Franco, Rosario Lo
Quantum Physics
Production of quantum states exhibiting a high degree of entanglement out of noisy conditions is one of the main goals of quantum information science. Here, we provide a conditional yet efficient entanglement distillation method which functions within the framework of spatially localized operations and classical communication. This method exploits indistinguishability effects due to the spatial overlap between two identical qubits in distinct sites and encompasses particle statistics imprint. We derive the general conditions for the maximum entanglement distillation out of mixed states. As applications, we give a thorough description of distilled entanglement and associated success probability starting from typical noisy states, such as thermal Gibbs states and Werner states. The influence of local temperatures and of noise parameter is discussed, respectively, in these two cases. The proposed scheme paves the way towards quantum repeaters in composite networks made of controllable identical quantum particles.
title Indistinguishability-assisted two-qubit entanglement distillation
topic Quantum Physics
url https://arxiv.org/abs/2305.11964