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Photonic integrated circuits for multi-color laser engines

机译:用于多色激光引擎的光子集成电路

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Photonic Integrated Circuits (PIC) will change the fundamental paradigms for the design of multi-color laser engines for life sciences. Exemplified with flow cytometry (FCM), integrated optical technology for visible wavelengths will be shown to open a new spectrum of possibilities to control flow cell illumination patterns, such as the number of output spots, the spot size, and even complex patterns generated by interferometry. Integration of additional optical functions such as variable optical attenuation, wavelength division multiplexing or fast shutters adds value to the PIC. TOPTICA is demonstrating integration of PICs in present Multi-color Laser Engine (MLE) architectures. Multiple wavelengths (405nm, 488nm, 561nm, 640nm) are coupled free space into the chip, leveraging its beam steering COOL~(AC) (Constant Optical Output Level Auto Calibration) technology for automatic realignment, thus overcoming the need of fiber input delivery. Once in the waveguide, the light can be redirected and shaped to a desired output pattern and pitch, reducing the need of discrete optical components. In this work, we will discuss the implementation of various building blocks in PIC technology for MLEs and analyze the advantages over current macroscopic counterparts.
机译:光子集成电路(PIC)将改变用于生命科学的多色激光引擎设计的基本范例。以流式细胞仪(FCM)为例,将显示用于可见波长的集成光学技术,从而打开一个新的可能性范围,以控制流动池照明图案,例如输出光斑的数量,光斑大小,甚至是干涉法生成的复杂图案。集成其他光学功能,例如可变光衰减,波分复用或快速快门,为PIC增添了价值。 TOPTICA正在展示PIC在当前的多色激光引擎(MLE)架构中的集成。多种波长(405nm,488nm,561nm,640nm)耦合到芯片的自由空间中,利用其光束控制COOL〜(AC)(恒定光输出水平自动校准)技术进行自动重新对准,从而克服了光纤输入传输的需求。一旦进入波导,就可以将光重新定向并成形为所需的输出图案和间距,从而减少了对分立光学组件的需求。在这项工作中,我们将讨论用于MLE的PIC技术中各种构造块的实现,并分析与当前宏观同类产品相比的优势。

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