Search Results - "Mochimaru, S."

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  1. 1

    Study of the X-ray microbeam for scanning microscopes by Iketaki, Y., Horikawa, Y., Mochimaru, S., Nagai, K., Kiyokura, T., Oshima, M., Yagishita, A.

    “…We fabricated a Schwarzschild X-ray objective which has the maximum X-ray transmittance of 9% at the wavelength of 14.1nm and evaluated an X-ray microbeam…”
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    Journal Article
  2. 2

    Amplified MOS imager for soft X-ray imaging by Takayanagi, I., Nagai, K., Tetsuka, H., Inoue, Y., Araki, S., Mochimaru, S., Iketaki, Y., Horikawa, Y., Matsumoto, K.

    Published in IEEE transactions on electron devices (01-08-1995)
    “…This paper describes a new area sensor for soft X-rays, and its performance. The operational principle is based on detecting the change in potential of a…”
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  3. 3

    Soft X-ray microscope with zone plate at UVSOR by Watanabe, Norio, Aoki, S., Shimanuki, Y., Kawasaki, K., Taniguchi, M., Anderson, E., Attwood, D., Kern, D., Shimizu, S., Nagata, H., Horikawa, Y., Mochimaru, S., Kihara, H.

    “…A soft X-ray microscope with zone plates was set up at UVSOR [synchrotron radiation facility (750MeV, 200mA) at Institute for Molecular Science, Okazaki,…”
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  4. 4

    Formation of an X-ray microbeam using a Schwarzschild X-ray objective by IKETAKI, Y, HORIKAWA, Y, MOCHIMARU, S, NAGAI, K

    “…A soft X-ray microbeam was formed using a Schwarzschild X-ray objective designed to have transmittance at a wavelength of 14 nm. The widths of the X-ray beam…”
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  5. 5

    Measurement of knife-edge responses of a Schwarzschild X-ray objective by IKETAKI, Y, HORIKAWA, Y, NAGAI, K, MOCHIMARU, S, OHTA, Y, KAMIJOU, H, SHIBUYA, M

    Published in Japanese Journal of Applied Physics (01-04-1993)
    “…The spatial resolution of a Schwarzschild objective was evaluated at the wavelength of 135 Å by means of an apparatus constructed using the knife-edge method…”
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  6. 6
  7. 7

    A Study on Natural Convection from Two Cylinders in a Cavity by Mochimaru Yoshihiro, Bae Myung-Whan

    “…Steady-state natural convection heat transfer characteristics from cylinders in a multiply-connected bounded region are clarified. A spectral finite difference…”
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