P.N.Lebedev Physical Institute, 53 Leninsky Prospekt, Moscow, Russia.
Micron. 2010 Oct;41(7):722-8. doi: 10.1016/j.micron.2010.06.011. Epub 2010 Jun 30.
The high transparency of carbon-containing materials in the spectral region of "carbon window" (lambda approximately 4.5-5nm) introduces new opportunities for various soft X-ray microscopy applications. The development of efficient multilayer coated X-ray optics operating at the wavelengths of about 4.5nm has stimulated a series of our imaging experiments to study thick biological and synthetic objects. Our experimental set-up consisted of a laser plasma X-ray source generated with the 2nd harmonics of Nd-glass laser, scandium-based thin-film filters, Co/C multilayer mirror and X-ray film UF-4. All soft X-ray images were produced with a single nanosecond exposure and demonstrated appropriate absorption contrast and detector-limited spatial resolution. A special attention was paid to the 3D imaging of thick low-density foam materials to be used in design of laser fusion targets.
含碳材料在“碳窗口”光谱区域(约 4.5-5nm)的高透明度为各种软 X 射线显微镜应用带来了新的机会。在约 4.5nm 波长下运行的高效多层镀膜 X 射线光学器件的发展激发了一系列我们的成像实验,以研究厚生物和合成物体。我们的实验装置由钕玻璃激光的二次谐波产生的激光等离子体 X 射线源、基于钪的薄膜滤波器、Co/C 多层反射镜和 X 射线胶片 UF-4 组成。所有软 X 射线图像均采用单次纳秒曝光产生,并显示出适当的吸收对比度和探测器限制的空间分辨率。特别关注用于激光聚变靶设计的厚低密度泡沫材料的 3D 成像。