X-ray multi-scale microfabrication system and x-ray imaging evaluation system all in one beamline

Author:

Yamamoto Kanta1,Utsumi Yuichi1,Sakurai Ikuya2ORCID,Okada Ikuo2,Hanada Kenji3,Ishizawa Hidehiro4,Takeo Masahiro4,Watanabe Taki1,Amano Sho1ORCID,Suzuki Satoru1ORCID,Sumitomo Koji4ORCID,Yamaguchi Akinobu1ORCID

Affiliation:

1. Laboratory of Advanced Science and Technology for Industry, University of Hyogo 1 , 3-1-2 Kouto, Kamigori, Ako-gun, Hyogo 678-1205, Japan

2. Synchrotron Radiation Research Center, Nagoya University 2 , Furo-cho, Chikuka-ku, Nagoya, Aichi 464-8603, Japan

3. Aichi Science & Technology Foundation 3 , 250-3, Minami-yamaguchi-cho, Seto, Aichi 489-0965, Japan

4. Graduate School of Engineering, University of Hyogo 4 , 2167 Shosha, Himeji, Hyogo 671-2280, Japan

Abstract

We have completed a system that can achieve both deep x-ray lithography and submicron x-ray lithography with a single beamline by introducing the combination of x-ray plane and cylindrical mirrors. This x-ray lithography system can provide a large-scale microfabrication processing with 210 × 300 mm2 (A4 size). To exploit multiscale lithography, the beamline has a beam transport vacuum duct with a two-stage stacked structure and a 5-axis stage. This two-stage stacked structure allows us to fabricate both micron scale structures with high aspect ratios and submicron scale structures using the same beamline. In addition, x-ray imaging and computer tomography (CT) system are connected to the x-ray lithography system for nondestructive inspection and evaluation of the fabricated microstructures. The x-ray imaging system constructed this study has a relatively low energy range of x-ray energy in the beamline, which is in the range of 2–15 keV or less. Therefore, relatively good absorption contrast can be obtained for plastic materials, biomaterials, and the like. Since nondestructive imaging of the processed shape by x-ray lithography is possible, it is a very useful system in processing and evaluation can be performed simultaneously. This system also enables us to obtain the live images with keeping the creature alive in liquid using an indirect x-ray imaging system which converts x-ray images to visible light images through the fluorescent plate.

Publisher

American Vacuum Society

Subject

Materials Chemistry,Electrical and Electronic Engineering,Surfaces, Coatings and Films,Process Chemistry and Technology,Instrumentation,Electronic, Optical and Magnetic Materials

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