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Broadband quantum light on a fiber-optic platform: From biphotons and heralded single photons to bright squeezed vacuum

Authors :
Petrovnin K.
Smirnov M.
Fedotov I.
Voronin A.
Latypov I.
Shmelev A.
Talipov A.
Matveeva T.
Fedotov A.
Moiseev S.
Zheltikov A.
Petrovnin K.
Smirnov M.
Fedotov I.
Voronin A.
Latypov I.
Shmelev A.
Talipov A.
Matveeva T.
Fedotov A.
Moiseev S.
Zheltikov A.
Source :
SCOPUS16122011-2019-16-7-SID85069751405

Abstract

© 2019 Astro Ltd. Four-wave mixing (FWM) of ultrashort laser pulses in a highly nonlinear photonic-crystal fiber is shown to provide a multimodal source of broadband quantum states of light. In the regime of low pump powers, generation of two-photon states and heralded single photons with a bandwidth up to ≈6 THz is demonstrated within an FWM-sideband tunability range of ≈55 THz. In the modality of heralded single-photon generation, three-detector measurements of the conditional second-order correlation function reveal a strong antibunching in the signal-photon channel, with more than 99.2% of the signal counts identified as truly single-photon states. At high pump powers, two-detector signal-idler correlation function measurements indicate broadband bright squeezed vacuum generation.

Details

Database :
OAIster
Journal :
SCOPUS16122011-2019-16-7-SID85069751405
Publication Type :
Electronic Resource
Accession number :
edsoai.on1055561217
Document Type :
Electronic Resource