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

被引:0
|
作者
VALERIO VITALI [1 ,2 ]
THALíA DOMíNGUEZ BUCIO [1 ]
HAO LIU [1 ]
JOSé MANUEL LUQUE GONZáLEZ [3 ]
FRANCISCO JURADO-ROMERO [3 ]
ALEJANDRO ORTEGA-MO?UX [3 ]
GLENN CHURCHILL [1 ]
JAMES C.GATES [1 ]
JAMES HILLIER [4 ,5 ]
NIKOLAOS KALFAGIANNIS [4 ,6 ]
DANIELE MELATI [7 ]
JENS H.SCHMID [8 ]
ILARIA CRISTIANI [2 ]
PAVEL CHEBEN [8 ]
J.GONZALO WANGüEMERT-PéREZ [3 ]
í?IGO MOLINA-FERNáNDEZ [3 ]
FREDERIC GARDES [1 ]
COSIMO LACAVA [2 ]
PERIKLIS PETROPOULOS [1 ]
机构
[1] Optoelectronics Research Centre, University of Southampton
[2] Electrical, Computer and Biomedical Engineering Department, University of Pavia
[3] Telecommunication Research Institute (TELMA), Universidad de Málaga, CEI Andaluc??a TECH, E.T.S.I.Telecomunicación
[4] School of Science and Technology, Nottingham Trent University
[5] Department of Electrical Engineering, Eindhoven University of Technology
[6] Department of Materials Science and Engineering, University of Ioannina
[7] Centre de Nanosciences et de Nanotechnologies, Université Paris-Saclay,CNRS
[8] Advanced Electronics and Photonics Research Center, National Research Council Canada
基金
英国工程与自然科学研究理事会;
关键词
D O I
暂无
中图分类号
O43 [光学]; TN773 [变频器、混频器];
学科分类号
070207 ; 0803 ;
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 waveguide. This allows, in principle, to place signals in different spectral regions and satisfy the phase matching condition over considerably larger bandwidths compared to intramodal processes.However, 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 modes. We demonstrate here a silicon-rich silicon nitride wavelength converter based on Bragg scattering intermodal FWM, which integrates mode conversion, multiplexing and de-multiplexing functionalities on-chip. The system enables wavelength conversion between pump waves and a signal located in different telecommunication bands (separated by 60 nm)with a 3 d B bandwidth exceeding 70 nm, which represents, to our knowledge, the widest bandwidth ever achieved in an intermodal FWM-based system.
引用
收藏
页码:351 / 360
页数:10
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