基于頻率-分辨干涉自相關(guān)區(qū)分ZnOF-P微腔的二次諧波和多光子熒光

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關(guān)鍵詞:氧化鋅;頻率-分辨干涉;二次諧波;多光子吸收;強(qiáng)耦合微腔中圖分類號:0482.31 文獻(xiàn)標(biāo)識碼:ADOI:10.37188/CJL.20240261 CSTR:32170.14.CJL.20240261
Distinction Between Second Harmonic Generation and Multi-photon Luminescence in ZnO F-P Microcavity via Frequency-resolved InterferometricAutocorrelation
ZHU Hai*,DONG Junxing,WANG Runchen,WANG Lisheng, WANGJingzhuo,ZHANGYifan
(StateKeyLaboratoryofOptoelectronicMaterialsand Technologies,SchoolofPhysics, SunYat-SenUniversity,Guangzhou510275,China) *CorrespondingAuthor,E-mail:zhuhai5@mail.sysu.edu.cn
Abstract:The nonlinear up-conversion opticalproperties of ZnO micro-belt and ZnO Fabry-Pérot(F-P) microcavity were studiedby using frequency-resolved interferometric autocorrelation.ZnO micro-belt were prepared by chemical vapor deposition(CVD)method and dry-transfered between a pair of distributed Bragg reflectors (DBR)to form a two-dimensional strongly coupled F-P microcavity.A home-built micro-spectroscopy system was used for interferometric autocorrlationand angle-resolved spectral measurements.Theexperimental results showed that when pumping ZnO samples with near-infrared ultrafast lasers,both second harmonic generation (SHG)and multi-photon absorption(MPA) upconversion fluorescence signals coexisted.The distinction between SHG and MPA signals could be achieved through diferent characteristic lines on the frequency spectra. In the case of ZnO F-P microcavity,SHG and MPA signals occupied different emission angles.The competitive relationship between MPA exciton-polaritons and SHG in the strong coupled microcavity system was discussed. Ourresults providedareferencefor thestudyof microcavitylasers through higher-order nonlinearupconversion methods.
Key words:zinc oxide;frequency-resolved interference;second harmonic generation;multi-photon absorption; strong coupled microcavity
1引言
2實驗
近幾十年來,超快激光技術(shù)的發(fā)展使得在實驗室中獲得 以上量級的瞬時輻射功率密度成為可能,這大幅促進(jìn)了光與物質(zhì)之間強(qiáng)非線性相互作用的相關(guān)研究,諸如高次諧波產(chǎn)生、多光子吸收上轉(zhuǎn)換等過程。(剩余11031字)