Quick Quantum Steering: Overcoming Loss and Noise with Qudits

A primary requirement for a robust and unconditionally secure quantum network is the establishment of quantum nonlocal correlations over a realistic channel. While loophole-free tests of Bell nonlocality allow for entanglement certification in such a device-independent setting, they are extremely se...

Full description

Bibliographic Details
Main Authors: Vatshal Srivastav, Natalia Herrera Valencia, Will McCutcheon, Saroch Leedumrongwatthanakun, Sébastien Designolle, Roope Uola, Nicolas Brunner, Mehul Malik
Format: Article
Language:English
Published: American Physical Society 2022-11-01
Series:Physical Review X
Online Access:http://doi.org/10.1103/PhysRevX.12.041023
_version_ 1797987877564448768
author Vatshal Srivastav
Natalia Herrera Valencia
Will McCutcheon
Saroch Leedumrongwatthanakun
Sébastien Designolle
Roope Uola
Nicolas Brunner
Mehul Malik
author_facet Vatshal Srivastav
Natalia Herrera Valencia
Will McCutcheon
Saroch Leedumrongwatthanakun
Sébastien Designolle
Roope Uola
Nicolas Brunner
Mehul Malik
author_sort Vatshal Srivastav
collection DOAJ
description A primary requirement for a robust and unconditionally secure quantum network is the establishment of quantum nonlocal correlations over a realistic channel. While loophole-free tests of Bell nonlocality allow for entanglement certification in such a device-independent setting, they are extremely sensitive to loss and noise, which naturally arise in any practical communication scenario. Quantum steering relaxes the strict technological constraints of Bell nonlocality by reframing it in an asymmetric manner, with a trusted party only on one side. However, tests of quantum steering still require either extremely high-quality entanglement or very low loss. Here we introduce a test of quantum steering that harnesses the advantages of high-dimensional entanglement to be simultaneously noise robust and loss tolerant. Despite being constructed for qudits, our steering test is designed for single-detector measurements and is able to close the fair-sampling loophole in a time-efficient manner. We showcase the improvements over qubit-based systems by experimentally demonstrating quantum steering in up to 53 dimensions, free of the fair-sampling loophole, through simultaneous loss and noise conditions corresponding to 14.2-dB loss equivalent to 79 km of telecommunication fiber, and 36% of white noise. We go on to show how the use of high dimensions counterintuitively leads to a dramatic reduction in total measurement time, enabling a quantum steering violation almost 2 orders of magnitude faster obtained by simply doubling the Hilbert space dimension. Our work conclusively demonstrates the significant resource advantages that high-dimensional entanglement provides for quantum steering in terms of loss, noise, and measurement time, and opens the door toward practical quantum networks with the ultimate form of security.
first_indexed 2024-04-11T07:55:13Z
format Article
id doaj.art-ca2d76d2021f47a086a331790c95b906
institution Directory Open Access Journal
issn 2160-3308
language English
last_indexed 2024-04-11T07:55:13Z
publishDate 2022-11-01
publisher American Physical Society
record_format Article
series Physical Review X
spelling doaj.art-ca2d76d2021f47a086a331790c95b9062022-12-22T04:35:58ZengAmerican Physical SocietyPhysical Review X2160-33082022-11-0112404102310.1103/PhysRevX.12.041023Quick Quantum Steering: Overcoming Loss and Noise with QuditsVatshal SrivastavNatalia Herrera ValenciaWill McCutcheonSaroch LeedumrongwatthanakunSébastien DesignolleRoope UolaNicolas BrunnerMehul MalikA primary requirement for a robust and unconditionally secure quantum network is the establishment of quantum nonlocal correlations over a realistic channel. While loophole-free tests of Bell nonlocality allow for entanglement certification in such a device-independent setting, they are extremely sensitive to loss and noise, which naturally arise in any practical communication scenario. Quantum steering relaxes the strict technological constraints of Bell nonlocality by reframing it in an asymmetric manner, with a trusted party only on one side. However, tests of quantum steering still require either extremely high-quality entanglement or very low loss. Here we introduce a test of quantum steering that harnesses the advantages of high-dimensional entanglement to be simultaneously noise robust and loss tolerant. Despite being constructed for qudits, our steering test is designed for single-detector measurements and is able to close the fair-sampling loophole in a time-efficient manner. We showcase the improvements over qubit-based systems by experimentally demonstrating quantum steering in up to 53 dimensions, free of the fair-sampling loophole, through simultaneous loss and noise conditions corresponding to 14.2-dB loss equivalent to 79 km of telecommunication fiber, and 36% of white noise. We go on to show how the use of high dimensions counterintuitively leads to a dramatic reduction in total measurement time, enabling a quantum steering violation almost 2 orders of magnitude faster obtained by simply doubling the Hilbert space dimension. Our work conclusively demonstrates the significant resource advantages that high-dimensional entanglement provides for quantum steering in terms of loss, noise, and measurement time, and opens the door toward practical quantum networks with the ultimate form of security.http://doi.org/10.1103/PhysRevX.12.041023
spellingShingle Vatshal Srivastav
Natalia Herrera Valencia
Will McCutcheon
Saroch Leedumrongwatthanakun
Sébastien Designolle
Roope Uola
Nicolas Brunner
Mehul Malik
Quick Quantum Steering: Overcoming Loss and Noise with Qudits
Physical Review X
title Quick Quantum Steering: Overcoming Loss and Noise with Qudits
title_full Quick Quantum Steering: Overcoming Loss and Noise with Qudits
title_fullStr Quick Quantum Steering: Overcoming Loss and Noise with Qudits
title_full_unstemmed Quick Quantum Steering: Overcoming Loss and Noise with Qudits
title_short Quick Quantum Steering: Overcoming Loss and Noise with Qudits
title_sort quick quantum steering overcoming loss and noise with qudits
url http://doi.org/10.1103/PhysRevX.12.041023
work_keys_str_mv AT vatshalsrivastav quickquantumsteeringovercominglossandnoisewithqudits
AT nataliaherreravalencia quickquantumsteeringovercominglossandnoisewithqudits
AT willmccutcheon quickquantumsteeringovercominglossandnoisewithqudits
AT sarochleedumrongwatthanakun quickquantumsteeringovercominglossandnoisewithqudits
AT sebastiendesignolle quickquantumsteeringovercominglossandnoisewithqudits
AT roopeuola quickquantumsteeringovercominglossandnoisewithqudits
AT nicolasbrunner quickquantumsteeringovercominglossandnoisewithqudits
AT mehulmalik quickquantumsteeringovercominglossandnoisewithqudits