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12-inch X-ray optics based on MEMS process

  • Kumi Ishikawa
  • , Yuichiro Ezoe
  • , Masaki Numazawa
  • , Tomohiro Ogawa
  • , Mayu Sato
  • , Kasumi Nakamura
  • , Takaya Ohashi
  • , Kazuhisa Mitsuda
  • , Ryutaro Maeda
  • , Hiroshi Hiroshima
  • , Yuichi Kurashima
  • , Daiji Noda
  • JAXA Institute of Space and Astronautical Science
  • Tokyo Metropolitan University
  • National Institute of Advanced Industrial Science and Technology
  • Micromachine Center

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

A large size X-ray optic with a 12-inch silicon wafer is fabricated to increase X-ray collecting power. The 12-inch silicon optic is formed by a combination of photolithography, dry etching and chemical mechanical polishing techniques. Furthermore, in order to smooth surfaces of the etched sidewalls used as X-ray reflection plane, the optic is annealed with high temperature. To verify the surface profile, X-ray reflectivity measurements are conducted with Al Kα 1.49 keV and reflected X-rays are detected for the first time. From the X-ray reflectivity data, it is suggested that the optic has ridge and slope structures on the sidewall surfaces, which decrease the reflection region by shadowing a part of the sidewall surface and changing a practical incident angle. An estimated surface roughness is ∼ 2 nm rms, which is consistent with the surface profiles measured by an atomic force microscope.

Original languageEnglish
Pages (from-to)2815-2821
Number of pages7
JournalMicrosystem Technologies
Volume23
Issue number7
DOIs
StatePublished - 1 Jul 2017
Externally publishedYes

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