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首页> 外文期刊>Journal of Russian laser research >CREATION OF A DIAGNOSTIC COMPLEX FOR THE CHARACTERIZATION OF CRYOGENIC LASER-FUSION TARGETS USING THE TOMOGRAPHY METHOD WITH PROBING IRRADIATION IN THE VISIBLE SPECTRUM
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CREATION OF A DIAGNOSTIC COMPLEX FOR THE CHARACTERIZATION OF CRYOGENIC LASER-FUSION TARGETS USING THE TOMOGRAPHY METHOD WITH PROBING IRRADIATION IN THE VISIBLE SPECTRUM

机译:在可见光谱中使用断层照相术和探照法创建可表征低温激光融合目标的诊断复合物

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摘要

We present our results on developing a diagnostic complex for high-precision characterization of the parameters of laser-fusion microobjects, such as microspheres and cryogenic targets (the microobject size is 1-2 mm). The complex operates based on the principle of tomography. The complex consists of (a) the scanning system providing a set of shadow projections of a microobject in the visible range of radiation and (b) specially developed software for 3D reconstruction of the microobject from the set of projections. The spatial resolution of the optical system is 1 μm for a probing-radiation wavelength of 490 nm. The distinctive features of the diagnostic complex are (1) operation with both freestanding and mounted targets and (2) the possibility of scanning the targets from room to cryogenic temperatures. The operation of the complex was demonstrated in the reconstruction of polystyrene microspheres by a large set (80-90) of shadow projections at room and cryogenic temperatures.
机译:我们提出了关于开发诊断复合体以高精度表征激光融合微物体(例如微球和低温目标(微物体尺寸为1-2 mm))参数的结果。该综合大楼根据断层扫描原理工作。该综合系统由(a)扫描系统在辐射的可见光范围内提供一组微对象的阴影投影以及(b)专门开发的软件组成,用于根据该组投影对微对象进行3D重建。对于490 nm的探测辐射波长,光学系统的空间分辨率为1μm。诊断系统的显着特征是(1)可同时安装独立目标和已安装目标,以及(2)从室温到低温扫描目标的可能性。在室温和低温条件下,大量(80-90)的阴影投影在聚苯乙烯微球的重建中证明了该配合物的作用。

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