On-chip low loss heralded source of pure single photons.

A key obstacle to the experimental realization of many photonic quantum-enhanced technologies is the lack of low-loss sources of single photons in pure quantum states. We demonstrate a promising solution: generation of heralded single photons in a silica photonic chip by spontaneous four-wave mixing...

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Main Authors: Spring, J, Salter, P, Metcalf, B, Humphreys, P, Moore, M, Thomas-Peter, N, Barbieri, M, Jin, X, Langford, N, Kolthammer, W, Booth, M, Walmsley, I
Format: Journal article
Language:English
Published: 2013
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author Spring, J
Salter, P
Metcalf, B
Humphreys, P
Moore, M
Thomas-Peter, N
Barbieri, M
Jin, X
Langford, N
Kolthammer, W
Booth, M
Walmsley, I
author_facet Spring, J
Salter, P
Metcalf, B
Humphreys, P
Moore, M
Thomas-Peter, N
Barbieri, M
Jin, X
Langford, N
Kolthammer, W
Booth, M
Walmsley, I
author_sort Spring, J
collection OXFORD
description A key obstacle to the experimental realization of many photonic quantum-enhanced technologies is the lack of low-loss sources of single photons in pure quantum states. We demonstrate a promising solution: generation of heralded single photons in a silica photonic chip by spontaneous four-wave mixing. A heralding efficiency of 40%, corresponding to a preparation efficiency of 80% accounting for detector performance, is achieved due to efficient coupling of the low-loss source to optical fibers. A single photon purity of 0.86 is measured from the source number statistics without narrow spectral filtering, and confirmed by direct measurement of the joint spectral intensity. We calculate that similar high-heralded-purity output can be obtained from visible to telecom spectral regions using this approach. On-chip silica sources can have immediate application in a wide range of single-photon quantum optics applications which employ silica photonics.
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spelling oxford-uuid:19e6d245-b8f5-4e89-8b4d-12a5f2ffd6b12022-03-26T10:51:39ZOn-chip low loss heralded source of pure single photons.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:19e6d245-b8f5-4e89-8b4d-12a5f2ffd6b1EnglishSymplectic Elements at Oxford2013Spring, JSalter, PMetcalf, BHumphreys, PMoore, MThomas-Peter, NBarbieri, MJin, XLangford, NKolthammer, WBooth, MWalmsley, IA key obstacle to the experimental realization of many photonic quantum-enhanced technologies is the lack of low-loss sources of single photons in pure quantum states. We demonstrate a promising solution: generation of heralded single photons in a silica photonic chip by spontaneous four-wave mixing. A heralding efficiency of 40%, corresponding to a preparation efficiency of 80% accounting for detector performance, is achieved due to efficient coupling of the low-loss source to optical fibers. A single photon purity of 0.86 is measured from the source number statistics without narrow spectral filtering, and confirmed by direct measurement of the joint spectral intensity. We calculate that similar high-heralded-purity output can be obtained from visible to telecom spectral regions using this approach. On-chip silica sources can have immediate application in a wide range of single-photon quantum optics applications which employ silica photonics.
spellingShingle Spring, J
Salter, P
Metcalf, B
Humphreys, P
Moore, M
Thomas-Peter, N
Barbieri, M
Jin, X
Langford, N
Kolthammer, W
Booth, M
Walmsley, I
On-chip low loss heralded source of pure single photons.
title On-chip low loss heralded source of pure single photons.
title_full On-chip low loss heralded source of pure single photons.
title_fullStr On-chip low loss heralded source of pure single photons.
title_full_unstemmed On-chip low loss heralded source of pure single photons.
title_short On-chip low loss heralded source of pure single photons.
title_sort on chip low loss heralded source of pure single photons
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