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High-Efficiency Temporally Decorrelated Multifocal Arrays for Multiphoton Microscopy and Micromachining

机译:用于多光子显微镜和微机器的高效时间去相关的多焦点阵列

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Temporally decorrelated multifocal arrays eliminate the spatial interference of adjacent foci that occurs in multifocal arrays and allow multifocal imaging with the diffraction-limited resolution of a single focus even with closely spaced foci. To date, we have produced 1-D temporally decorrelated multifocal arrays using low throughput etalons, which limited the efficiency of the arrays. In this work, we demonstrate a 2-D high-efficiency cascaded-beamsplitter array for producing the beamlets. Using the cascaded beamsplitters, we split the 800-nm light from an ultrashort-pulsed Ti:Al_2O_3 laser into a 2-D array of beamlets in which the pulses arrive at a plane perpendicular to the propagation direction at different times. We then overlap the collimated beams with slightly different angles at the entrance aperture to a 1.25 NA oil-immersion objective and produce 2-dimensional array of foci that are temporally decorrelated. This allows multiphoton imaging with diffraction-limited focusing, even for pulses as short as 20-fs. This new method of imaging will make it possible to completely overlap the foci and eliminate the need for scanning. This makes highly efficient use of the power available from typical ultrafast lasers, increasing the frame rate in multiphoton microscopy and the throughput in micromachining applications.
机译:临时去相关的多焦体阵列消除了在多焦点阵列中发生的相邻焦点的空间干扰,并允许多焦点成像,即使具有紧密间隔的焦点,即使具有紧密间隔的焦点,具有单一焦点的衍射限制分辨率。迄今为止,我们使用低通量标准龙制作了1-D时间去相关的多焦点阵列,这限制了阵列的效率。在这项工作中,我们展示了一种用于制造辐射的2-D高效级联束扣阵列。使用级联的束分布器,我们将800-nm光从超短脉冲Ti:Al_2O_3激光器分成2-D阵列的束束,其中脉冲在不同时间垂直于传播方向的平面到达。然后,我们将准直的光束与入口孔径略微不同的角度重叠到1.25 na油浸物镜,并产生时间上去相关的二维焦点阵列。这允许多光子成像与衍射限制聚焦,即使对于短至20-FS的脉冲也是如此。这种成像方法将使可以完全重叠焦点并消除对扫描的需求。这使得高效地利用典型超快激光器的功率,增加了多光子显微镜中的帧速率以及微机械化应用中的吞吐量。

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