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Nonlinear silicon photonics on CMOS-compatible tellurium oxide

查看全文 作  者:NEETESH [1,2]SINGH;HAMIDU [3]M.MBONDE;HENRY [3]C.FRANKIS;ERICH [2]IPPEN;JONATHAN [3]D.B.BRADLEY;FRANZ [1]X.KÄRTNER 高影响力作者 机构地区:[1]Centre for Free Electron Laser Science(CFEL)-DESY and University of Hamburg,22607 Hamburg,Germany;[2]Research Laboratory of Electronics,Massachusetts Institute of Technology,Cambridge,Massachusetts 02139,USA;[3]Department of Engineering Physics,McMaster University,Hamilton,Ontario L8S 4L7,Canada高影响力机构 出  处:《Photonics Research》索引2020年第8卷第12期,共6页高影响力期刊 基  金:Defense Advanced Research Projects Agency(HR0011-15-C-0056);Natural Sciences and Engineering Research Council of Canada(RGPIN-2017-06423,STPGP 494306);Deutsche Forschungsgemeinschaft(SP2111). 摘  要:Silicon photonics is coming of age;however,it is still lacking a monolithic platform for optical sources and nonlinear functionalities prompting heterogeneous integration of different materials tailored to different applications.Here we demonstrate tellurium oxide as a complementary metal oxide semiconductor silicon photonics platform for nonlinear functionalities,which is already becoming an established platform for sources and amplifiers.We show broadband supercontinuum generation covering the entire telecom window and show for the first time to our knowledge third-harmonic generation in its integrated embodiment.Together with the nowavailable lasers and amplifiers on integrated Te O_(2) this work paves the way for a monolithic TeO_(2)-based nonlinear silicon photonics platform. 关 键 词:OXIDE TOGETHER PROMPT
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