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Optical Resonators With Whispering-Gallery applications(8)

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AWGMlaserwithpulsedopticalpumpingfabricatedbysurroundingasmallsectionofaglasscapillarywithasolutionofRhodamine6G,andbycouplingthepumplightintothecapillarywall,wasdemonstratedin[175].Thelasingthresholdpumpenergywas100nJ/pulseatapumppulsedurationof6ns.2)LasinginDopedWGRs:AnotherwaytocreateaWGRlaseristheuseofsolidsdopedwithactiveelements;e.g.,rareearthionsasaWGRhostmaterial.

AWGMlaserbasedonneodymium-dopedsilicamicro-sphereswitha200nWthresholdwasrealized[176]withmicrospheresofradiusa~25–50µm,formedbyheat-fusingthetipofalengthofdopedsilica ber.Neodymiumionsprovideafavorablefour-levellasersystemthatcanbepumpedonthe4I9/2 4F5/2transitionat~810nmwithadiodelaser.Thelasertransition4F3/2 4I11/2inthe1.06–1.09µmrangeconnectsalonglivedupperleveltoalowerlevelthatisdepletedbystrongphononrelaxationsothatpopulationinversioniseasilyachieved.Similarexperimentswithaneodymium-dopedsilicamicrospherelaseroperatingat2Kandabsorbing200nWpumppowerwerereportedin[177].CWlaseroscillationonboththe4F3/2→4I11/2and4F3/2→4I13/2transitionsofNd3+ionsin uorideglassWGRswasalsoachieved[178].FabricationofNd-dopedtelluriteglassWGRsandobservations

WGM谐振腔综述

22IEEEJOURNALOFSELECTEDTOPICSINQUANTUMELECTRONICS,VOL.12,NO.1,JANUARY/FEBRUARY2006

oflaseroscillationcorrespondingtotheopticaltransition4

F3/2→4I11/2at1.06µmwasreportedin[179].

AWGMlaserutilizingamicrospheremadeofhighlydopederbium:ytterbiumphosphateglasswasusedtogeneratelightat1.5µm[180].Laserthresholdpumppowerof60µWand ber-coupledoutputpowerashighas3µWwithsingle-modeoperationwereobtained.Abispherelasersystemconsistingoftwomicrospheresattachedtoasingle bertaperwasalsodemonstrated.

AnEr3+-dopedtelluriteglassL-bandWGRlaserwasdemon-stratedanddiscussedin[181].Themicrospheresweremadebya“spinmethod.”Fibertaperswereutilizedtocouple975nmpumpintothesphereandcouplegeneratedlight(1.56–1.61µm)outofthesphere.Theerbiumionconcentrationofthetelluriteglasswas1.7×1020ions/cm3.

Agreenroomtemperatureup-conversionlaserwasdemon-stratedina120µmdiametermicrosphereofEr3+dopedZBLAN[182],[183].Lasingoccurredaround540nmwitha801nmdiodelaserpump.Thelasingthresholdwas30µWofabsorbedpumppower.

Experimentalresultsontherealizationandspectralcharac-terizationofEr:ZBLANmicrosphericallasersat1.56µmwerepresentedin[184],[185].Thelasingwasobtainedwiththeexternal1.48µmpumping.Multimodeoperationandalaserthresholdaslowas600µWwereobserved.

Greenlasinghaving4mWthresholdwasdemonstratedinanerbium-ion-doped uoro-zirconateglassWGR[186].Peri-odicnarrowpeaksoftheemissionspectracorrespondingtotheWGRswereobserved.

Anerbium-dopedmicrolaseronsilicon,operatingatwave-lengthof1.5µmandcharacterizedwithpumpthresholdaslowas4.5µW,wasdemonstratedin[187].The40-µmdi-ametertoroidallaserWGRwasmadeusingacombinationoferbiumionimplantation,photolithography,wetanddryetch-ing,andlaserannealing,usingathermallygrownSiO2 lmonaSisubstrateasastartingmaterial.Singlemodelasingwasobserved.

Anothererbium-dopedhigh-QsilicatoroidalWGRmicro-laser(25–80µmindiameter)wasdemonstratedin[188].TheWGRwascoupledwithataperedoptical ber.Erbiumioncon-centrationswereintherange0.009–0.09at.%.Thresholdpumppowerwasaslowas4.5µW.

ATm3+-dopedtelluriteglassWGRlaserwasdiscussedin[189].Thelaser,pumpedat800nmwithataperedopti-cal ber,oscillatesinboththeSbandandthe1.9-µmband.Thepeakat1.5µm(S-band)correspondstoemissionofthe3

H4→3F4transition,whilethepeakat1.9µmcorrespondstothe3F4→3H6transition.

Numericalanalysisofamicrodisklaser,takingintoaccountfullgainsaturationeffectandthevectorcharacterofthe eld,waspresentedin[190].TheauthorssuggestedthatNd:YAGmicrodisklasersaretheexcellentcandidatesforalightsourceforoptical bercommunicationsoperatingat1.064and1.3µm.Atheoreticalstudyofthein uenceofdeformationofaWGRonlasingpropertieswasreportedin[191].

3)LasinginCoatedWGRs:Insteadofusingdopedmateri-als,apassiveWGRcanbecoatedwithgainmedium.Forex-ample,erbium-dopedsolgel lmswereappliedtothesurfaceofsilicamicrospherestocreatelow-thresholdWGRlasers[192].Lasingactioninanultra-high-QsphericalWGRcoatedwithgainmediumwasreportedin[193].

LasinginasquarecavitywithroundcornerscoatedwithpolymethylmethacrylateandwithRhodamine6Gmolecules,wasstudiedin[194].Athingainlayerwascoatedonlyontheouterboundaryofcavity.Thethicknessofthegainlayervariedfromonemicrometertoseveralmicrometers.

Ultravioletmicrodisklasersonsiliconsubstratewithalayerofzincoxidegainmediumgrownontopofthesilicamicrodisksweredemonstratedin[195].LasingoccursintheWGRsatroomtemperature.ThehybridZnO–SiO2WGRwasopticallypumpedbythethirdharmonics(355nm)ofamode-lockedNd:YAGlaserwith~10Hzrepetitionrateand20pspulsewidth.Amicroscopeobjectivelensisusedforfocusingpumplightontheresonatoraswellasforcollectingtheultravioletemissionat~390nm.AWGM-enhancedinelasticemissionfromamonolayerofA488 uorophoresonthesurfaceofa9.8µmWGR(polystyrenebeadtrappedinanopticaltrap)wasobservedandreported[196].ItwaspointedoutthatitwaslikelythattheWGM-enhancedemissionisduetoA488lasing,withalasingthresholdbetween0.29and0.87W·cm 2.

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