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Fully integrated and broadband Si-rich silicon nitride wavelength converter based on Bragg scattering intermodal four-wave mixing

作     者:VALERIO VITALI THALÍA DOMÍNGUEZ BUCIO HAO LIU JOSÉMANUEL LUQUE GONZÁLEZ FRANCISCO JURADO-ROMERO ALEJANDRO ORTEGA-MOÑUX GLENN CHURCHILL JAMES C.GATES JAMES HILLIER NIKOLAOS KALFAGIANNIS DANIELE MELATI JENS H.SCHMID ILARIA CRISTIANI PAVEL CHEBEN J.GONZALO WANGÜEMERT-PÉREZ ÑIGO MOLINA-FERNÁNDEZ FREDERIC GARDES COSIMO LACAVA PERIKLIS PETROPOULOS VALERIO VITALI;THALÍA DOMÍNGUEZ BUCIO;HAO LIU;JOSÉ MANUEL LUQUE GONZÁLEZ;FRANCISCO JURADO-ROMERO;ALEJANDRO ORTEGA-MOÑUX;GLENN CHURCHILL;JAMES C.GATES;JAMES HILLIER;NIKOLAOS KALFAGIANNIS;DANIELE MELATI;JENS H.SCHMID;ILARIA CRISTIANI;PAVEL CHEBEN;J.GONZALO WANGÜEMERT-PÉREZ;ÍÑIGO MOLINA-FERNÁNDEZ;FREDERIC GARDES;COSIMO LACAVA;PERIKLIS PETROPOULOS

作者机构:Optoelectronics Research CentreUniversity of SouthamptonSouthampton SO171BJUK 2ElectricalComputer and Biomedical Engineering DepartmentUniversity of PaviaPavia 27100Italy 3Telecommunication Research Institute(TELMA)Universidad de MálagaCEI Andalucı´a TECHE.T.S.I.Telecomunicación29010 MálagaSpain 4School of Science and TechnologyNottingham Trent UniversityNottingham NG118NSUK 5Department of Electrical EngineeringEindhoven University of TechnologyEindhoven 5600 MBThe Netherlands 6Department of Materials Science and EngineeringUniversity of IoanninaIoannina 45110Greece 7Centre de Nanosciences et de NanotechnologiesUniversitéParis-SaclayCNRS91120 PalaiseauFrance 8Advanced Electronics and Photonics Research CenterNational Research Council CanadaOttawaOntario K1A 0R6Canada 

出 版 物:《Photonics Research》 (光子学研究(英文版))

年 卷 期:2024年第12卷第3期

页      面:I0001-I0010页

核心收录:

学科分类:070207[理学-光学] 07[理学] 080902[工学-电路与系统] 0809[工学-电子科学与技术(可授工学、理学学位)] 08[工学] 0803[工学-光学工程] 0702[理学-物理学] 

基  金:Engineering and Physical Sciences Research Council(EP/R003076/1,EP/T007303/1,EP/W024772/1) Ministero dell’Universitàe della Ricerca(PRIN(2022H7RR4F)) 

主  题:scattering pump modal 

摘      要:Intermodal four-wave mixing(FWM)processes have recently attracted significant interest for all-optical signal processing applications thanks to the possibility to control the propagation properties of waves exciting distinct spatial modes of the same *** allows,in principle,to place signals in different spectral regions and satisfy the phase matching condition over considerably larger bandwidths compared to intramodal ***,the demonstrations reported so far have shown a limited bandwidth and suffered from the lack of on-chip components designed for broadband manipulation of different *** demonstrate here a silicon-rich silicon nitride wavelength converter based on Bragg scattering intermodal FWM,which integrates mode conversion,multiplexing and de-multiplexing functionalities *** system enables wavelength conversion between pump waves and a signal located in different telecommunication bands(separated by 60 nm)with a 3 dB bandwidth exceeding 70 nm,which represents,to our knowledge,the widest bandwidth ever achieved in an intermodal FWM-based system.

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