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Thedevelopment of pink-beam 4D phase CT to observethelaser drilling into the poly(methyl methacrylate)

机译:粉红色梁4D相CT的发展观察激光钻入聚(甲基丙烯酸甲酯)

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We report the development of pink-beam 4D (time-resolved) phase CT at BL28B2 at SPring-8 facility to observe fast phenomena related to the laser-induced drilling and engraving into the polymer. In our experimental configuration, the X-ray multilayer mirror was applied to filter out white synchrotron radiation and a resultant pink-beam with a mean energy of 25 keV and an energy bandwidth of 10 % was used for phase imaging by X-ray Talbot interferometer (XTI) . The main purpose of pink-beam was reduction of radiation damage caused to samples and tailoring the spectrum of X-ray beam fit to XTI. The XTI was composed of a π/2 phase grating (G1) and an amplitude grating (G2) with a pitch of 5.3 μm with a spacing corresponding to the 1st fractional Talbot distance of 283 mm between them. 4D phase CT was performed with the continuous fringe scanning technique to record a movie of differential phase images. In the continuous fringe scanning technique, during 5 continuous sample rotations, Gl was continuously moved by a distance equal to the grating pitch (5.3 μm). In this study, we improved the time for recording differential phase images during 180° sample rotation from previously reported 2 s to 1s. The improved temporal resolution was achieved by increasing of frame rate of X-ray detector from 1000 fps to 2000 fps while the number of projections per 180° rotation was maintained at a value of 400 and field of view was decreased from 1536 × 512 to 1024 × 512 (H × V). The developed pink-beam 4D phase CT set-up with improved temporal resolution was applied to observe laser-induced drilling into the poly (methyl methacrylate) (PMMA).
机译:我们在Spring-8设施在Spring-8设施在BL28B2处报道了粉红色梁4D(时间分辨)相CT的开发,以观察与激光诱导的钻孔和雕刻成聚合物的快速现象。在我们的实验配置中,施加X射线多层镜子以滤除白色同步辐射,并产生25keV的平均能量的粉红色梁,并且10%的能量带宽用于X射线Talbot干涉仪的相位成像(XTI)。粉红色梁的主要目的是降低了对样品引起的辐射损伤,并定制X射线束谱配合到XTI的光谱。 XTI由π/ 2相位光栅(G1)和振幅(G2)组成,振荡距5.3μm,间距对应于它们之间的第1分数塔距离283mm。用连续条纹扫描技术进行4D相CT来记录差分相位图像的电影。在连续条纹扫描技术中,在5次连续样品旋转期间,GL连续地移动等于光栅间距(5.3μm)。在这项研究中,我们从先前报告的2S到1S改善了在180°样品旋转期间记录差分相位图像的时间。通过从1000 fps到2000 fps的X射线检测器的帧速率提高X射线检测器的帧速率来实现改进的时间分辨率,而每180°旋转的突起的数量保持在400的值,并且视场从1536×512降低到1024 ×512(H×V)。施加具有改进的时间分辨率的发育粉红色梁4D相CT设置以观察激光诱导的钻入聚(甲基丙烯酸甲酯)(PMMA)。

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