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920 nm fiber laser delivering 100 fs pulses for nonlinear microscopy

机译:920 nm光纤激光器提供100 fs脉冲用于非线性显微镜

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摘要

This presentation focuses on ultrafast fiber lasers as excitation light-source for advanced microscopy. We will presentour latest innovations and show how multiphoton microscopy can benefit from these developments. This will propelimaging techniques like TPEF, SHG, CARS or STED among others that excel conventional microscopy techniques in adeeper penetration depth, label-free imaging capability or higher spatial resolution.Wavelengths around 900 nm for addressing certain applications with fluorescent proteins and pulse durations as short as100 fs remain a challenge for fiber lasers. TOPTICA has now launched the third generation of ultrafast fiber lasersovercoming these difficulties. The novel FF ultra laser platform is capable of generating such short pulses at not only thewavelengths 780 nm and 1050 nm but most recently at 920 nm too. This enables the imaging of the popular greenfluorescent protein (GFP) and its derivatives with lowest possible power level because of the high efficiency. In thecourse of this work, we present selected applications proving the suitability of this industrial grade laser family for abroad variety of microscopic applications.
机译:本演讲重点介绍超快光纤激光器作为高级显微镜的激发光源。我们将展示\ r \ nour最新的创新技术,并展示多光子显微镜如何从这些发展中受益。这将推动TPEF,SHG,CARS或STED等成像技术在更深的穿透深度,无标记成像能力或更高的空间分辨率方面优于传统的显微技术。\ r \ n波长约为900 nm使用荧光蛋白和短至100 fs的脉冲持续时间来解决某些应用仍然是光纤激光器的挑战。 TOPTICA现在已经推出了第三代超快光纤激光器,以克服这些困难。新颖的FF超激光平台不仅能够在780 nm和1050 nm的波长处产生这种短脉冲,而且最近也能在920 nm处产生这种短脉冲。由于效率高,因此可以以尽可能低的功率水平对流行的绿色荧光蛋白(GFP)及其衍生物进行成像。在本文的过程中,我们介绍了一些证明该工业级激光器系列适用于各种各样的显微应用的应用。

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  • 来源
    《》|2019年|108820U.1-108820U.7|共7页
  • 会议地点
  • 作者单位

    University of Applied Sciences Munich, Lothstr. 34, 80335 München, Germany TOPTICA Photonics AG, Lochhamer Schlag 19, 82166 Gräfelfing, Germany hellerer@hm.edu;

    University of Applied Sciences Munich, Lothstr. 34, 80335 München, Germany;

    TOPTICA Photonics AG, Lochhamer Schlag 19, 82166 Gräfelfing, Germany;

    University of Applied Sciences Munich, Lothstr. 34, 80335 München, Germany;

    TOPTICA Photonics AG, Lochhamer Schlag 19, 82166 Gräfelfing, Germany;

    TOPTICA Photonics AG, Lochhamer Schlag 19, 82166 Gräfelfing, Germanye;

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  • 正文语种 eng
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