简介:基于VirtualLabFusion构建了时域光学相干层析技术(timedomainopticalcoherencetomography,TDOCT)光路系统,导入不同颗数发光二极管(lightemittingdiode,LED)的合成光谱,从参考镜的位置变化中获得干涉信号,以此分析出合成光源的半高宽和相干度,以及对应TDOCT的纵向分辨率.结果表明,合成光源的最大强度值随着LED颗数从1到10的增加先增加后趋向不变;而半高宽随之不断增加;TDOCT系统的纵向分辨率随之不断提高.当LED增加至3颗的时候,合成光源已经可以使TDOCT系统纵向分辨率提高至9.8μm,这与一颗超辐射发光二极管(superluminescentlight-emittingdiode,SLD)给出的分辨率级别相当.
简介:Inductivelycoupledplasmaatomicemissionspectroscopy(ICP-AES),pioneeredbyVAFasselandSGreenfieldwiththeinspirationfromReed,isoneofthemostexcitingdevelopmentsinanalyticalinstrumentationsince1960’s.Itcandetermineabout70elementsontheperiodictablewithbetterprecisionandequalorbettersensitivitythanthatobtainedwithflameatomicabsorptionspectrometry(FAAS).Inaddition,certain"difficult"elementsforFAAS,suchasAl,B,C,P,SandTi,etc.,canbeeasilydeterminedbyICP.TheICPisnotonlyaveryusefulexcitatiomsourceforAES,butalsoaveryusefulsourceforatomizationinatomicfluorescencespectrometry(AFS)andforionizationinatomicmassspectrometry(MS).Thislecturedeals