Song Jeong Hwan, Kongnyuy Tangla D, Hosseini Naser, Neutens Pieter, Buja Federico, Jansen Roelof, Rottenberg Xavier
Appl Opt. 2017 Oct 10;56(29):8055-8060. doi: 10.1364/AO.56.008055.
Compact wavelength splitters based on angled multimode interferometers (AMMIs) on silicon nitride platforms working in visible lights are reported for fluorescence sensing applications. A diplexer and triplexer with different footprints are designed and experimentally demonstrated. The diplexer and triplexer have the insertion loss of ∼1.7 and ∼2.7 dB/channel with cross talks of less than -22 dB and -17 dB on target wavelengths, respectively. These splitters are used to distinguish the signals collected from two fluorescent dyes that give different emission spectra when excited with an excitation source, due to their different Stokes shifts. In the case of the triplexer, a third port is to collect the excitation light, both to monitor the remaining excitation power and to reduce the interference at the signal ports. A termination structure at the end of the AMMIs and input and output tapering waveguides as a part of the wavelength splitters are designed and their performances are presented.
报道了基于氮化硅平台上的倾斜多模干涉仪(AMMI)的紧凑型波长分离器,其工作在可见光波段,用于荧光传感应用。设计并通过实验演示了具有不同尺寸的双工器和三工器。双工器和三工器的插入损耗分别约为1.7和2.7dB/通道,在目标波长上的串扰分别小于-22dB和-17dB。由于两种荧光染料具有不同的斯托克斯位移,当用激发源激发时会给出不同的发射光谱,这些分离器用于区分从它们收集到的信号。对于三工器,第三个端口用于收集激发光,既用于监测剩余的激发功率,又用于减少信号端口的干扰。设计了AMMI末端的终端结构以及作为波长分离器一部分的输入和输出渐变波导,并展示了它们的性能。