Programmable multi-photon quantum interference in a single spatial mode

Fuente: arXiv
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Main Authors: Carosini, Lorenzo, Oddi, Virginia, Giorgino, Francesco, Hansen, Lena M., Seron, Benoit, Piacentini, Simone, Guggemos, Tobias, Agresti, Iris, Loredo, Juan Carlos, Walther, Philip
Format: Preprint
Published: 2023
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author Carosini, Lorenzo
Oddi, Virginia
Giorgino, Francesco
Hansen, Lena M.
Seron, Benoit
Piacentini, Simone
Guggemos, Tobias
Agresti, Iris
Loredo, Juan Carlos
Walther, Philip
author_facet Carosini, Lorenzo
Oddi, Virginia
Giorgino, Francesco
Hansen, Lena M.
Seron, Benoit
Piacentini, Simone
Guggemos, Tobias
Agresti, Iris
Loredo, Juan Carlos
Walther, Philip
contents The interference of non-classical states of light enables quantum-enhanced applications reaching from metrology to computation. Most commonly, the polarisation or spatial location of single photons are used as addressable degrees-of-freedom for turning these applications into praxis. However, the scale-up for the processing of a large number of photons of such architectures is very resource demanding due to the rapidily increasing number of components, such as optical elements, photon sources and detectors. Here we demonstrate a resource-efficient architecture for multi-photon processing based on time-bin encoding in a single spatial mode. We employ an efficient quantum dot single-photon source, and a fast programmable time-bin interferometer, to observe the interference of up to 8 photons in 16 modes, all recorded only with one detector--thus considerably reducing the physical overhead previously needed for achieving equivalent tasks. Our results can form the basis for a future universal photonics quantum processor operating in a single spatial mode.
format Preprint
id arxiv_https___arxiv_org_abs_2305_11157
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Programmable multi-photon quantum interference in a single spatial mode
Carosini, Lorenzo
Oddi, Virginia
Giorgino, Francesco
Hansen, Lena M.
Seron, Benoit
Piacentini, Simone
Guggemos, Tobias
Agresti, Iris
Loredo, Juan Carlos
Walther, Philip
Quantum Physics
The interference of non-classical states of light enables quantum-enhanced applications reaching from metrology to computation. Most commonly, the polarisation or spatial location of single photons are used as addressable degrees-of-freedom for turning these applications into praxis. However, the scale-up for the processing of a large number of photons of such architectures is very resource demanding due to the rapidily increasing number of components, such as optical elements, photon sources and detectors. Here we demonstrate a resource-efficient architecture for multi-photon processing based on time-bin encoding in a single spatial mode. We employ an efficient quantum dot single-photon source, and a fast programmable time-bin interferometer, to observe the interference of up to 8 photons in 16 modes, all recorded only with one detector--thus considerably reducing the physical overhead previously needed for achieving equivalent tasks. Our results can form the basis for a future universal photonics quantum processor operating in a single spatial mode.
title Programmable multi-photon quantum interference in a single spatial mode
topic Quantum Physics
url https://arxiv.org/abs/2305.11157