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Fabrication of X-rays mask with carbon membrane for diffraction gratings

机译:用碳膜制作用于衍射光栅的X射线掩模

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We have produced diffraction gratings for obtaining high resolution X-ray phase imaging, such as X-ray Talbot interferometer. These diffraction gratings were required to have a fine, high accuracy, high aspect ratio structure. Therefore, we decided to use the X-rays lithography technique that used synchrotron radiation of the directivity for a manufacture process. The accuracy of the completed structure depends largely on the accuracy of the X-ray mask. In our group, a resin material is conventionally used for the membrane of large X-ray masks. However, X-ray masks comprising a resin membrane have the disadvantage that, after several cycles of X-ray exposure, they crease and sag due to X-ray-derived heat. As a substitute for the conventional resin membrane, we experimentally fabricated a new X-ray mask using a carbon wafer membrane. The newly fabricated X-ray mask was subjected to X-ray exposure experiment. We succeeded in making the structure body which was almost shape. And the experimental results verified that the new mask did not deteriorate even when used repeatedly, demonstrating that it was highly durable.
机译:我们已经生产出用于获得高分辨率X射线相位成像的衍射光栅,例如X射线Talbot干涉仪。这些衍射光栅需要具有精细,高精度,高纵横比的结构。因此,我们决定使用X射线光刻技术,该技术在制造过程中使用了方向性的同步加速器辐射。完整结构的精度在很大程度上取决于X射线光罩的精度。在我们的小组中,通常将树脂材料用于大型X射线掩模的膜。然而,包括树脂膜的X射线掩模的缺点在于,在X射线曝光的多个循环之后,由于X射线衍生的热量,它们会起皱和下垂。作为传统树脂膜的替代品,我们使用碳晶片膜实验性地制造了一种新型X射线掩模。对新制造的X射线掩模进行X射线曝光实验。我们成功地制造出几乎是形状的结构体。实验结果证明,即使反复使用新面罩也不会变质,表明它具有很高的耐用性。

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