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Measurement and modeling of the focusing of 15-fs optical pulses with a high-numerical-aperture objective

机译:高分辨率光圈目标的15-FS光脉冲聚焦的测量和建模

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Pulse broadening of ultrashort optical pulses, as short as 15 femtoseconds, due to the propagation through high- numerical-aperture microscope objectives can be pre- compensated to ensure temporal pulse integrity at the focal point. The predictions from dispersive ray-tracing calculations show excellent agreement with the experimental results from two-photon absorption autocorrelation for the Zeiss CP-Achromat 100$MUL@/1,25 oil microscope objective. From this, general predictions can be inferred for dispersion in most types of microscope objectives. Key element to the work is a carefully designed dispersion pre- compensation configuration, which minimizes pulse broadening due to residual third order dispersion. The capability to focus these ultrashort pulses with control of the pulse definition at the focal point is important for two-photon absorption and time-resolved microscopy.
机译:由于通过高数字 - 光圈显微镜目的传播,可以预先补偿焦点光脉冲的脉冲扩大,短至15毫秒偏移,以确保焦点的时间脉冲完整性。 来自分散射线跟踪计算的预测表现出优异的一致性与蔡司CP-ACHROMAT 100 $ MUL @ / 1,25油显微镜物镜的双光子吸收自相关的实验结果。 由此,可以在大多数类型的显微镜目标中推断出在分散中推断出一般预测。 工作的关键元素是一颗精心设计的色散预补偿配置,其由于残留的三阶色散而最小化脉冲扩展。 对焦点脉冲定义的控制能力聚焦这些超微脉冲对于双光子吸收和时间分辨显微镜是重要的。

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