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Synchronous-digitization for Video Rate Polarization Modulated Beam Scanning Second Harmonic Generation Microscopy

机译:视频速率偏振调制光束扫描二次谐波产生显微镜的同步数字化

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摘要

Fast beam-scanning non-linear optical microscopy, coupled with fast (8 MHz) polarization modulation and analytical modeling have enabled simultaneous nonlinear optical Stokes ellipsometry (NOSE) and linear Stokes ellipsometry imaging at video rate (15 Hz). NOSE enables recovery of the complex-valued Jones tensor that describes the polarization-dependent observables, in contrast to polarimetry, in which the polarization stated of the exciting beam is recorded. Each data acquisition consists of 30 images (10 for each detector, with three detectors operating in parallel), each of which corresponds to polarization-dependent results. Processing of this image set by linear fitting contracts down each set of 10 images to a set of 5 parameters for each detector in second harmonic generation (SHG) and three parameters for the transmittance of the fundamental laser beam. Using these parameters, it is possible to recover the Jones tensor elements of the sample at video rate. Video rate imaging is enabled by performing synchronous digitization (SD), in which a PCIe digital oscilloscope card is synchronized to the laser (the laser is the master clock.) Fast polarization modulation was achieved by modulating an electro-optic modulator synchronously with the laser and digitizer, with a simple sine-wave at 1/10th the period of the laser, producing a repeating pattern of 10 polarization states. This approach was validated using Z-cut quartz, and NOSE microscopy was performed for micro-crystals of naproxen.
机译:快速光束扫描非线性光学显微镜,再加上快速(8 MHz)偏振调制和分析模型,使得能够同时以视频速率(15 Hz)进行非线性光学斯托克斯椭圆仪(NOSE)和线性斯托克斯椭圆仪成像。与偏光法不同,NOSE能够恢复描述偏光相关观测值的复数值琼斯张量,偏光法记录了激发光束的偏光。每次数据采集包含30张图像(每个探测器10个图像,三个探测器并行运行),每个图像对应于偏振相关的结果。通过线性拟合对该图像集进行的处理将每组10张图像压缩为二次谐波生成(SHG)中每个检测器的5个参数和基本激光束透射率的3个参数。使用这些参数,可以以视频速率恢复样本的琼斯张量元素。通过执行同步数字化(SD),可以实现视频速率成像,其中PCIe数字示波器卡与激光(激光是主时钟)同步。通过与激光同步调制电光调制器可以实现快速偏振调制。和数字转换器,在激光器周期的1/10处产生一个简单的正弦波,产生10个偏振态的重复图案。使用Z形切割石英验证了该方法,并对萘普生的微晶体进行了NOSE显微镜检查。

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