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Microspot x-ray focusing using a short focal-length compound refractive lenses

机译:使用短焦距复合折叠镜片微微X射线聚焦

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摘要

We have fabricated and tested short focal-length compound refractive lenses (CRLs) composed of microbubbles embedded in epoxy encased in glass capillaries. The interface between the bubbles formed 90 to 350 spherical biconcave microlenses reducing the overall focal length inversely by the number of lenses or bubbles. When compared with CRLs manufactured using other methods, the microbubble lenses have shorter focal lengths with higher transmissions and larger gains for moderate energy x rays (e.g., 7–20 keV). We used beamline 2–3 at the Stanford Synchrotron Radiation Laboratory and beamline 5BM-D-DND at the Advanced Photon Source to measure focal lengths between 100–250 mm with lens apertures varying between 97 and 321 mm. Transmission profiles were measured giving, for example, a peak transmission of 46% for a 240 mm focal length CRL at 20 keV. The focal-spot sizes were also measured yielding, for example, a vertical spot size of 1.2 mm resulting from an approximate 20-fold demagnification of the APS 23 mm source size. The measured gains in intensity over that of unfocused beam were between 9 and 26.
机译:我们已经制造和测试了由嵌入在玻璃毛细管中的环氧树脂中的微泡组成的短焦距复合折射镜(CRL)。气泡之间的界面形成90至350球形双晶的微透镜,其逆转由透镜或气泡的数量减小整体焦距。当与用其它方法制造的CRL相比,微泡透镜具有更高的传输和用于中等能量X射线(例如,7-20千电子伏)放大增益较短的焦距。我们在高级光子源处的斯坦福同步辐射实验室和梁线5bm-d-dnd中使用了梁线2-3,以测量100-250 mm之间的焦距,镜头孔在97到321mm之间变化。测量传输专业LES,例如,在20kEV的240mm焦距CRL的峰值透射率为46%。还测量了焦点尺寸,例如,由APS 23mm源极尺寸的近似20倍的脱磁焊区的垂直点尺寸为1.2mm。强度的测量增长在未聚焦光束的强度为9和26之间。

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