Towards heralded distribution of polarization entanglement

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Marcellino, Francis, Caspar, Patrik, Brydges, Tiff, Zbinden, Hugo, Thew, Rob
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909225671720960
author Marcellino, Francis
Caspar, Patrik
Brydges, Tiff
Zbinden, Hugo
Thew, Rob
author_facet Marcellino, Francis
Caspar, Patrik
Brydges, Tiff
Zbinden, Hugo
Thew, Rob
contents Distributing entangled states over potentially long distances provides a key resource for many protocols in quantum communication and quantum cryptography. Ideally, this should be implemented in a heralded manner. By starting with four single-photon states, we cascade two single-photon path-entangled states, coded in orthogonal polarizations, to distribute and herald polarization entanglement in a single quantum repeater link architecture. By tuning the input states to minimize (local) losses, the theoretically achievable fidelity to the target state without postselection approaches 1, while sacrificing heralding rates. We achieve a fidelity to the target state of over 95% after postselection, providing a benchmark for the experimental control. We show that the fidelity of the heralded state without postselection scales predictably and also identify various practical challenges and error sources specific to this architecture, and model their effects on the generated state. While our experiment uses probabilistic photon-pair sources based on spontaneous parametric down-conversion, many of these problems are also relevant for variants employing deterministic photon sources.
format Preprint
id arxiv_https___arxiv_org_abs_2311_05492
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Towards heralded distribution of polarization entanglement
Marcellino, Francis
Caspar, Patrik
Brydges, Tiff
Zbinden, Hugo
Thew, Rob
Quantum Physics
Distributing entangled states over potentially long distances provides a key resource for many protocols in quantum communication and quantum cryptography. Ideally, this should be implemented in a heralded manner. By starting with four single-photon states, we cascade two single-photon path-entangled states, coded in orthogonal polarizations, to distribute and herald polarization entanglement in a single quantum repeater link architecture. By tuning the input states to minimize (local) losses, the theoretically achievable fidelity to the target state without postselection approaches 1, while sacrificing heralding rates. We achieve a fidelity to the target state of over 95% after postselection, providing a benchmark for the experimental control. We show that the fidelity of the heralded state without postselection scales predictably and also identify various practical challenges and error sources specific to this architecture, and model their effects on the generated state. While our experiment uses probabilistic photon-pair sources based on spontaneous parametric down-conversion, many of these problems are also relevant for variants employing deterministic photon sources.
title Towards heralded distribution of polarization entanglement
topic Quantum Physics
url https://arxiv.org/abs/2311.05492